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	<title>Engineering Seminar Topics&#124; Seminar Topics &#187; Electronics Seminars</title>
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		<title>Remote Media Immersion (RMI)</title>
		<link>http://www.techalone.com/2010/remote-media-immersion/</link>
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		<pubDate>Tue, 26 Jan 2010 14:55:14 +0000</pubDate>
		<dc:creator>admin</dc:creator>
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		<description><![CDATA[Download Full Article Remote Media Immersions.doc ABSTRACT The Remote Media Immersion (RMI) system is the result of a unique blend of multiple cutting-edge media technologies to create the ultimate digital media delivery platform. The main goal is to provide an immersive user experience of the highest quality. RMI encompasses all end-to-end aspects from media acquisition, [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" click here to download " href="http://www.techalone.com/wp-content/uploads/2010/01/Remote-Media-Immersion.doc"> Remote Media Immersions</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt">ABSTRACT</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The Remote Media Immersion (RMI) system is the result of a unique blend of multiple cutting-edge media technologies to create the ultimate digital media delivery platform. The main goal is to provide an immersive user experience of the highest quality. RMI encompasses all end-to-end aspects from media acquisition, storage, transmission up to their final rendering. Specifically, the Yima streaming media server delivers multiple high bandwidth streams, transmission error and flow control protocols ensure data integrity, and high-definition video combined with immersive audio provide highest quality rendering. The RMI system is operational and has been successfully demonstrated in small and large venues. Relying on the continued advances in electronics integration and residential broadband improvement, RMI demonstrates the future of on-demand home entertainment.</p>
<p class="MsoNormal"><span style="font-size: 14pt">INTRODUCTION</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The charter of the Integrated Media Systems Center (IMSC) at the University of Southern California  (USC) is to investigate new methods and technologies that combine multiple modalities into highly effective, immersive technologies, applications and environments. One of the results of these research efforts is the Remote Media Immersion (RMI) system. The goal of the RMI is to create and develop a complete aural and visual environment that places a participant or group of participants in a virtual space where they can experience events that occurred in different physical locations. RMI technology can effectively overcome the barriers of time and space to enable, on demand, the realistic recreation of visual and aural cues recorded in widely separated locations.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The focus of the RMI effort is to enable the most realistic recreation of an event possible while streaming the data over the Internet. Therefore, we push the technological boundaries much beyond what current video-on-demand or streaming media systems can deliver. As a consequence, high-end rendering equipment and significant transmission bandwidth are required. The RMI project integrates several technologies that are the result of research efforts at IMSC. The current operational version is based on four major components that are responsible for the acquisition, storage, transmission, and rendering of high quality media.</p>
<p class="MsoNormal"><span style="font-size: 14pt"> STAGES OF RMI</span></p>
<p class="MsoNormal"><span style="font-size: 12pt"> Acquisition of high-quality media streams </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">This authoring component is an important part of the overall chain to ensure the high quality of the rendering result as experienced by users at a later time. As the saying “garbage in, garbage out” implies, no amount of quality control in later stages of the delivery chain can make up for poorly acquired media.</p>
<p class="MsoNormal"><span style="font-size: 12pt"> Real-time digital storage and playback of multiple independent streams </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Yima  Scalable Streaming Media Architecture provides real-time storage, retrieval and transmission capabilities. The Yima server is based on a scalable cluster design. Each cluster node is an off-the-shelf personal computer with attached storage devices and, for example, a Fast or Gigabit Ethernet connection. The Yima server software manages the storage and network resources to provide real-time service to the multiple clients that are requesting media streams. Media types include, but are not limited to, MPEG-2 at NTSC and HDTV resolutions, multichannel audio (e.g., 10.2 channel immersive audio), and MPEG-4</p>
<p class="MsoNormal"><span style="font-size: 12pt"> Protocols for synchronized, efficient real time transmission of multiple media streams</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">A selective data retransmission scheme improves playback quality while maintaining realtime properties. A flow control component reduces network traffic variability and enables streams of various characteristics to be synchronized at the rendering location. Industry standard networking protocols such as Real-Time Protocol (RTP) and Real-Time Streaming Protocol (RTSP) provide compatibility with commercial systems.</p>
<p class="MsoNormal"><span style="font-size: 12pt"> Rendering of immersive audio and high resolution video </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Immersive audio is a technique developed at IMSC for capturing the audio environment at a remote site and accurately reproducing the complete audio sensation and ambience at the client location with full fidelity, dynamic range and directionality for a group of  listeners (16 channels of uncompressed linear PCM at a data rate of up to 17.6Mb/s). The RMI video is rendered in HDTV resolutions (1080i or 720p format) and transmitted at a rate of up to 45 Mb/s.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" click here to download " href="http://www.techalone.com/wp-content/uploads/2010/01/Remote-Media-Immersion.doc"> Remote Media Immersions</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>FINFET</title>
		<link>http://www.techalone.com/2009/finfet/</link>
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		<pubDate>Fri, 17 Apr 2009 09:39:13 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[Electronics]]></category>
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		<guid isPermaLink="false">http://techalone.com/?p=276</guid>
		<description><![CDATA[Download Full Article FINFET .doc INTRODUCTION Since the fabrication of MOSFET, the minimum channel length has been shrinking continuously. The motivation behind this decrease has been an increasing interest in high speed devices and in very large scale integrated circuits. The sustained scaling of conventional bulk device requires innovations to circumvent the barriers of fundamental [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" Click Here To Download " href=" http://techalone.com/wp-content/uploads/2009/04/finfet.doc "> FINFET </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt"> INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Since the fabrication of MOSFET, the minimum channel length has been shrinking continuously. The motivation behind this decrease has been an increasing interest in high speed devices and in very large scale integrated circuits. The sustained scaling of conventional bulk device requires innovations to circumvent the barriers of fundamental physics constraining the conventional MOSFET device structure. The limits most often cited are control of the density and location of dopants providing high I on /I off ratio and finite subthreshold slope and quantum-mechanical tunneling of carriers through thin gate from drain to source and from drain to body. The channel depletion width must scale with the channel length to contain the off-state leakage I off. This leads to high doping concentration, which degrade the carrier mobility and causes junction edge leakage due to tunneling. Furthermore, the dopant profile control, in terms of depth and steepness, becomes much more difficult. The gate oxide thickness tox must also scale with the channel length to maintain gate control, proper threshold voltage VT and performance. The thinning of the gate dielectric results in gate tunneling leakage, degrading the circuit performance, power and noise margin.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Alternative device structures based on silicon-on-insulator (SOI) technology have emerged as an effective means of extending MOS scaling beyond bulk limits for mainstream high-performance or low-power applications .Partially depleted (PD) SOI was the first SOI technology introduced for high-performance microprocessor applications. The ultra-thin-body fully depleted (FD) SOI and the non-planar FinFET device structures promise to be the potential “future” technology/device choices.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">In these device structures, the short-channel effect is controlled by geometry, and the off-state leakage is limited by the thin Si film. For effective suppression of the off-state leakage, the thickness of the Si film must be less than one quarter of the channel length. The desired VT is achieved by manipulating the gate work function, such as the use of midgap material or poly-SiGe. Concurrently, material enhancements, such as the use of  a) high-k gate material and b) strained Si channel for mobility and current drive improvement, have been actively pursued.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">As scaling approaches multiple physical limits and as new device structures and materials are introduced, unique and new circuit design issues continue to be presented. In this article, we review the design challenges of these emerging technologies with particular emphasis on the implications and impacts of individual device scaling elements and unique device structures on the circuit design. We focus on the planar device structures, from continuous scaling of PD SOI to FD SOI, and new materials such as strained-Si  channel and high-k gate dielectric.</p>
<p class="MsoNormal"><span style="font-size: 14pt"> PARTIALLY DEPLETED [PD] SOI</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The PD floating-body MOSFET was the first SOI transistor generically adopted for high-performance applications, primarily due to device and processing similarities to bulk CMOS device.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The PD SOI device is largely identical to the bulk device, except for the addition of a buried oxide (“BOX”) layer. The active Si film thickness is larger than the channel depletion width, thus leaving a quasi-neutral “floating” body region underneath the channel. The V T of the device is completely decoupled from the Si film thickness, and the doping profiles can be tailored for any desired VT .</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click Here To Download " href=" http://techalone.com/wp-content/uploads/2009/04/finfet.doc "> FINFET </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>GPRS</title>
		<link>http://www.techalone.com/2009/gprs/</link>
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		<pubDate>Fri, 17 Apr 2009 03:43:05 +0000</pubDate>
		<dc:creator>admin</dc:creator>
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		<description><![CDATA[Download Full Article GPRS.doc ABSTRACT The General Packet Radio Service (GPRS) is a new non-voice value added service that allows information to be sent and received across a mobile telephone network. It supplements today&#8217;s Circuit Switched Data and Short Message Service. GPRS is NOT related to GPS (the Global Positioning System), a similar acronym that [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" Click Here To Download " href="http://techalone.com/wp-content/uploads/2009/04/gprs.doc "> GPRS</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt"> ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The General Packet Radio Service (GPRS) is a new non-voice value added service that allows information to be sent and received across a mobile telephone network. It supplements today&#8217;s Circuit Switched Data and Short Message Service. GPRS is NOT related to GPS (the Global Positioning System), a similar acronym that is often used in mobile contexts. GPRS has several unique features which can be summarized as:</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">SPEED: Theoretical maximum speeds of up to 171.2 kilobits per second (kbps) are achievable with GPRS using all eight timeslots at the same time. This is about three times as fast as the data transmission speeds possible over today&#8217;s fixed telecommunications networks and ten times as fast as current Circuit Switched Data services on GSM networks.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">IMMEDIACY: GPRS facilitates instant connections whereby information can be sent or received immediately as the need arises, subject to radio coverage. No dial-up modem connection is necessary. This is why GPRS users are sometimes referred to be as being &#8220;always connected&#8221;.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">NEW APPLICATIONS, BETTER APPLICATIONS: GPRS facilitates several new applications that have not previously been available over GSM networks due to the limitations in speed of Circuit Switched Data (9.6 kbps) and message length of the Short Message Service (160 characters). GPRS will fully enable the Internet applications you are used to on your desktop from web browsing to chat over the mobile network.</p>
<p class="MsoNormal"><span style="font-size: 14pt"> INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The General Packet Radio Service (GPRS) is a new service that provides actual packet radio access for Global System for Mobile Communications (GSM) and Time-Division Multiple Access (TDMA) users. It provides for the transmission of IP packets over existing cellular networks, bringing the Internet to the mobile phone. Anything the Internet offers, from web browsing to chat and email, will be available from GSM and TDMA service providers via GPRS-enabled devices..</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The main benefits of GPRS are that it reserves radio resources only when there is data to send and it reduces reliance on traditional circuit-switched network elements. The increased functionality of GPRS will decrease the incremental cost to provide data services, an occurrence that will, in turn, increase the penetration of data services among consumer and business users. In addition, GPRS will allow improved quality of data services as measured in terms of reliability, response time, and features supported. The unique applications that will be developed with GPRS will appeal to a broad base of mobile subscribers and allow operators to differentiate their services. These new services will increase capacity requirements on the radio and base-station subsystem resources. One method GPRS uses to alleviate the capacity impacts is sharing the same radio resource among all mobile stations in a cell, providing effective use of the scarce resources. In addition, new core network elements will be deployed to support the increased use of data services more efficiently.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">In addition to providing new services for today’s mobile user, GPRS is important as a migration step toward third-generation (3G) networks. GPRS will allow network operators to implement an IP-based core architecture for data applications, which will continue to be used and expanded upon for 3G services for integrated voice and data applications. In addition, GPRS will prove a testing and development area for new services and applications, which will also be used in the development of 3G services.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">GPRS is a non-voice, value added, packet-switched, mobile communication system. GPRS is implemented over the existing GSM network. So it shares GSM frequency bands and makes use of many properties of physical layer of the original GSM system, most importantly time-division multiple access frame structure, modulation techniques, and structure of GSM time slots.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click Here To Download " href="http://techalone.com/wp-content/uploads/2009/04/gprs.doc ">GPRS</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>DSL-Digital Subscriber Lines</title>
		<link>http://www.techalone.com/2009/dsl-digital-subscriber-lines/</link>
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		<pubDate>Fri, 17 Apr 2009 03:29:20 +0000</pubDate>
		<dc:creator>admin</dc:creator>
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		<description><![CDATA[Download Full Article DSL-Digital Subscriber Lines.doc ABSTRACT Digital Subscriber Lines (DSL) are used to deliver high-rate digital data over existing ordinary phone-lines. A new modulation technology called Discrete Multitone (DMT) allows the transmission of high speed data. DSL facilitates the simultaneous use of normal telephone services, ISDN, and high speed data transmission, e.g., video. DMT-based [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" Click Here To Download " href="http://techalone.com/wp-content/uploads/2009/04/dsl-seminar.doc"> DSL-Digital Subscriber Lines</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt"> ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Digital Subscriber Lines (DSL) are used to deliver high-rate digital data over existing ordinary phone-lines. A new modulation technology called Discrete Multitone (DMT) allows the transmission of high speed data. DSL facilitates the simultaneous use of normal telephone services, ISDN, and high speed data transmission, e.g., video. DMT-based DSL can be seen as the transition from existing copper-lines to the future fiber-cables. This makes DSL economically interesting for the local telephone companies. They can offer customers high speed data services even before switching to fiber-optics.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">DSL is a newly standardized transmission technology facilitating simultaneous use of normal telephone services, data transmission of 6 M bit/s in the downstream and Basic-rate Access (BRA). DSL can be seen as a FDM system in which the available bandwidth of a single copper-loop is divided into three parts. The base band occupied by POTS is split from the data channels by using a method which guarantees POTS services in the case of ADSL-system failure (e.g. passive filters).</p>
<p class="MsoNormal"><span style="font-size: 14pt"> INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The past decade has seen extensive growth of the telecommunications industry, with the increased popularity of the Internet and other data communication services. While offering the world many more services than were previously available, they are limited by the fact that they are being used on technology that was not designed for that purpose..</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The majority of Internet users access their service via modems connects to the Plain Old Telephone System (POTS). In the early stages of the technology, modems were extremely slow by today&#8217;s standards, but this was not a major issue. A POTS connection provided an adequate medium for the relatively small amounts of data that required transmission, and so was the existing system was the logical choice over special cabling.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Technological advances have seen these rates increase up to a point where the average Internet user can now download at rates approaching 50Kbps, and send at 33.6Kps. However, POTS was designed for voice transmission, at frequencies below 3kHz, and this severely limits the obtainable data rates of the system. To increase performance of new online services, such as steaming audio and video, and improve general access speed, the bandwidth hungry public must therefore consider other alternatives. Technologies, such as ISDN or cable connections, have been in development for sometime but require special cabling. This makes them expensive to set up, and therefore have not been a viable alternative for most people.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click Here To Download " href="http://techalone.com/wp-content/uploads/2009/04/dsl-seminar.doc"> DSL-Digital Subscriber Lines</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>Code-division-duplexing</title>
		<link>http://www.techalone.com/2009/code-division-duplexing/</link>
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		<pubDate>Tue, 14 Apr 2009 15:41:42 +0000</pubDate>
		<dc:creator>admin</dc:creator>
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		<description><![CDATA[Download Full Article Code-division-duplexing .doc ABSTRACT Reducing interference in a cellular system is the most effective approach to increasing radio capacity and transmission data rate in the wireless environment. Therefore, reducing interference is a difficult and important challenge in wireless communications. In every two-way communication system it is necessary to use separate channels to transmit [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" Click Here To Download " href="”"> Code-division-duplexing </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt"> ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Reducing interference in a cellular system is the most effective approach to increasing radio capacity and transmission data rate in the wireless environment. Therefore, reducing interference is a difficult and important challenge in wireless communications. In every two-way communication system it is necessary to use separate channels to transmit information in each direction. This is called duplexing.  Currently there exist only two duplexing technologies in wireless communications, Frequency division duplexing (FDD) and time division duplexing (TDD). FDD has been the primary technology used in the first three generations of mobile wireless because of its ability to isolate interference. TDD is seemingly a more spectral efficient technology but has found limited use because of interference and coverage problems.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Code-division duplexing (CDD) is an innovative solution that can eliminate all kinds of interference. CDMA is the best multiple access scheme when compared to all others for combating interference. However, the codes in CDMA can be more than one type of code. A set of smart codes can make a high-capacity CDMA system very effective without adding other technologies. The smart code plus TDD is called CDD. This paper will elaborate on a set of smart codes that will make an efficient CDD system a reality. The CDMA system based on this is known as the LAS-CDMA, where LAS is a set of smart codes. LAS-CDMA is a new coding technology that will increase the capacity and spectral efficiency of mobile networks. The advanced technology uses a set of smart codes to restrict interference, a property that adversely affects the efficiency of CDMA networks.</p>
<p class="MsoNormal"><span style="font-size: 14pt"> INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">To utilize spectrum efficiently, two transmission techniques need to be considered: one is a multiple access scheme and the other a duplexing system. There are three multiple access schemes namely TDMA, FDMA and CDMA. The industry has already established the best multiple access scheme, code-division multiple access (CDMA), for 3G systems. The next step is to select the best duplexing system. Duplexing systems are used for two-way communications. Presently, there are only two duplexing systems used: frequency-division duplexing (FDD), and time-division duplexing (TDD). The former uses different frequencies to handle incoming and outgoing signals. The latter uses a single frequency but different time slots to handle incoming and outgoing signals.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">In the current cellular duplexing systems, FDD has been the appropriate choice, not TDD. Currently, all cellular systems use frequency-division duplexing in an attempt to eliminate interference from adjacent cells. The use of many technologies has limited the effects of interference but still certain types of interference remain. Time-division duplexing has not been used for mobile cellular systems because it is even more susceptible to different forms of interference. TDD can only be used for small confined area systems..</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Code-division duplexing is an innovative solution that can eliminate all   kinds of interference. Eliminating all types of interference makes CDD the most spectrum efficient duplexing system.</p>
<p class="MsoNormal"><span style="font-size: 14pt"> CDMA overview :: Interference and Capacity</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">One of the key criteria in evaluating a communication system is its spectral efficiency, or the system capacity, for a given system bandwidth, or sometimes, the total data rate supported by the system. For a given bandwidth, the system capacity for narrow band radio systems is dimension limited, while the system capacity of a traditional CDMA system is interference limited. Traditional CDMA systems are all self-interference system. Three types of interference are usually considered. By ISI we mean InterSymbol Interference, which is created by the multi-path replica of the useful signal itself; MAI, or Mutual Access Interference, which is the interference created by the signals and their multi-path replica from the other users onto the useful signal; and ACI, or Adjacent Cell Interference, which is all the interfering signals from the adjacent cells onto the useful signal.  .</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Traditional synchronous CDMA systems employ almost exclusively Walsh-Hadamard orthogonal codes, jointly with PN sequence, and Gold codes, Kasami codes, etc. In these systems, due to the difficulty in timing synchronization and the large cross-correlation values around the origin, there exists a “near far” effect, such that in some typical system, fast power control has to be employed in order to keep an uniform received signal level at the base station. On the other hand, in forward channel all the signals’ power must be kept at an uniform level. Since the transmitting power of a user would interfere others and even may interfere itself, if one of the users in the system increases its power unilaterally, all other users power should be simultaneously increased; otherwise the controlled system power regime will be destroyed, and the capacity would be drastically decreased. This is because any radio channel, especially mobile channel, is a random time-varying time dispersion channel due to the multi-path effect, so that the received signal can not be reached at the receiver simultaneously.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click Here To Download " href=" http://techalone.com/wp-content/uploads/2009/04/code-division-duplexing.doc "> Code-division-duplexing </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>Brain Machine Interface</title>
		<link>http://www.techalone.com/2009/brain-machine-interface/</link>
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		<pubDate>Sun, 08 Feb 2009 15:28:14 +0000</pubDate>
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		<guid isPermaLink="false">http://techalone.com/?p=191</guid>
		<description><![CDATA[Download Full Article Brain Machine Interface.doc ABSTRACT A brain-machine interface is a communication system that does not depend on the brains normal output pathways of peripheral nerves and muscles. It is a new communication link between a functioning human brain and the outside world.These are electronic interfaces with the brain, which has the ability to [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/Brain Machine Interface.doc ">Brain Machine Interface</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt">ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">A brain-machine interface is a communication system that does not depend on the brains normal output pathways of peripheral nerves and muscles. It is a new communication link between a functioning human brain and the outside world.These are electronic interfaces with the brain, which has the ability to send and receive signals from the brain. BMI uses brain activity to command, control, actuate and communicate with the world directly through brain integration with peripheral devices and systems. The signals from the brain are taken to the computer via the implants for data entry without any direct brain intervention. BMI transforms mental decisions and/or reactions into control signals by analyzing the bioelectrical brain activity.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">While linking the brain directly with machines was once considered science fiction, advances over the past few years have made it increasingly viable. It is an area of intense research with almost limitless possibilities. The human brain is the most complex physical system we know of, and we would have to understand its operation in great detail to build such a device. An immediate goal of brain-machine interface study is to provide a way for people with damaged sensory/motor functions to use their brain to control artificial devices and restore lost capabilities. By combining the latest developments in computer technology and hi-tech engineering, paralyzed persons will be able to control a motorized wheel chair, computer painter, or robotic arm by thought alone. In this era where drastic diseases are getting common it is a boon if we can develop it to its full potential. Recent technical and theoretical advances, have demonstrated the ultimate feasibility of this concept for a wide range of space-based applications. Besides the clinical purposes such an interface would find immediate applications in various technology products also.</p>
<p class="MsoNormal"><span style="font-size: 14pt">INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Picture a time when humans see in the UV and IR portions of the electromagnetic spectrum, or hear speech on the noisy flight deck of an aircraft carrier; or when soldiers communicate by thought alone. Imagine a time when the human brain has its own wireless modem so that instead of acting on thoughts, war fighters have thoughts that act. Imagine that one day we will be able to download vast amounts of knowledge directly to our brain! So as to cut the lengthy processes of learning everything from scratch. Instead of paying to go to university we could pay to get a &#8220;knowledge implant&#8221; and perhaps be able to obtain many lifetimes worth of knowledge and expertise in various fields at a young age..</p>
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<p class="MsoNormal" style="text-align: justify; line-height: 150%">When we talk about high end computing and intelligent interfaces, we just cannot ignore robotics and artificial intelligence. In the near future, most devices would be remote/logically controlled. Researchers are close to breakthroughs in neural interfaces, meaning we could soon mesh our minds with machines. This technology has the capability to impact our lives in ways that have been previously thought possible in only sci-fi movies.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Brain-Machine Interface (BMI) is a communication system, which enables the user to control special computer applications by using only his or her thoughts. It will allow human brain to accept and control a mechanical device as a part of the body. Data can flow from brain to the outside machinery, or to brain from the outside machinery. Different research groups have examined and used different methods to achieve this. Almost all of them are based on electroencephalography (EEG) recorded from the scalp. Our major goal of such research is to create a system that allow patients who have damaged their sensory/motor nerves severely to activate outside mechanisms by using brain signals.</p>
<p class="MsoNormal" style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On<span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title="Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/Brain Machine Interface.doc ">Brain Machine Interface</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>LIGHT EMITTING POLYMER</title>
		<link>http://www.techalone.com/2009/light-emitting-polymer/</link>
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		<pubDate>Sun, 08 Feb 2009 15:19:39 +0000</pubDate>
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		<guid isPermaLink="false">http://techalone.com/?p=188</guid>
		<description><![CDATA[Download Full Article LIGHT EMITTING POLYMER .doc ABSTRACT The seminar is about polymers that can emit light when a voltage is applied to it. The structure comprises of a thin film of semiconducting polymer sandwiched between two electrodes (cathode and anode).When electrons and holes are injected from the electrodes, the recombination of these charge carriers [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/LIGHT EMITTING POLYMER.doc ">LIGHT EMITTING POLYMER </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt">ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The seminar is about polymers that can emit light when a voltage is applied to it. The structure comprises of a thin film of semiconducting polymer sandwiched between two electrodes (cathode and anode).When electrons and holes are injected from the electrodes, the recombination of these charge carriers takes place, which leads to emission of light .The band gap, ie. The energy difference between valence band and conduction band determines the wavelength (colour) of the emitted light.<br />
They are usually made by ink jet printing process. In this method red green and blue polymer solutions are jetted into well defined areas on the substrate. This is because, PLEDs are soluble in common organic solvents like toluene and xylene .The film thickness uniformity is obtained by multi-passing (slow) is by heads with drive per nozzle technology .The pixels are controlled by using active or passive matrix. The advantages include low cost, small size, no viewing angle restrictions, low power requirement, biodegradability etc. They are poised to replace LCDs used in laptops and CRTs used in desktop computers today. Their future applications include flexible displays which can be folded, wearable displays with interactive features, camouflage etc.</p>
<p class="MsoNormal"><span style="font-size: 14pt">INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Imagine these scenarios<br />
- After watching the breakfast news on TV, you roll up the set like a large handkerchief, and stuff it into your briefcase. On the bus or train journey to your office, you can pull it out and catch up with the latest stock market quotes on CNBC.<br />
- Somewhere in the Kargil sector, a platoon commander of the Indian Army readies for the regular satellite updates that will give him the latest terrain pictures of the border in his sector. He unrolls a plastic-like map and hooks it to the unit&#8217;s satellite telephone. In seconds, the map is refreshed with the latest high resolution camera images grabbed by an Indian satellite which passed over the region just minutes ago.<br />
Don’t imagine these scenarios at least not for too long.The current 40 billion-dollar display market, dominated by LCDs (standard in laptops) and cathode ray tubes (CRTs, standard in televisions), is seeing the introduction of full-color LEP-driven displays that are more efficient, brighter, and easier to manufacture. It is possible that organic light-emitting materials will replace older display technologies much like compact discs have relegated cassette tapes to storage bins. .</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The origins of polymer OLED technology go back to the discovery of conducting polymers in 1977,which earned the co-discoverers- Alan J. Heeger , Alan G. MacDiarmid and Hideki Shirakawa &#8211; the 2000 Nobel prize in chemistry. Following this discovery , researchers at Cambridge University UK discovered in 1990 that conducting polymers also exhibit electroluminescence and the light emitting polymer(LEP) was born!.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title="Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/LIGHT EMITTING POLYMER.doc ">LIGHT EMITTING POLYMER </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>RELIABLE ARRAY OF INDEPENDENT NODES</title>
		<link>http://www.techalone.com/2009/reliable-array-of-independent-nodes/</link>
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		<pubDate>Sun, 08 Feb 2009 15:08:33 +0000</pubDate>
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		<guid isPermaLink="false">http://techalone.com/?p=183</guid>
		<description><![CDATA[Download Full Article RELIABLE ARRAY OF INDEPENDENT NODES.doc ABSTRACT Nowadays the number of people who are using Internet is dramatically increasing. With no hesitation, it can be said that the Internet is indeed the most popular media of communication prevailing in the present world scenario. But many of the users are nowadays facing the problem [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/RELIABLE ARRAY OF INDEPENDENT NODES.doc ">RELIABLE ARRAY OF INDEPENDENT NODES</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt">ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Nowadays the number of people who are using Internet is dramatically increasing. With no hesitation, it can be said that the Internet is indeed the most popular media of communication prevailing in the present world scenario. But many of the users are nowadays facing the problem of failure in maintaining the connection with the cyber world.</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The prime reason for the problem is that in the existing technology of connection with the Internet, a client is connected to a server through a number of nodes which depends on each other to facilitate the flow of information. The problem with the existing technology is that, even if a single intermediate node malfunctions, the whole system collapses. The solution to the problem is RAIN-Reliable Array Of Independent Nodes developed by the California Institute of Technology (Caltech), in collaboration with NASA&#8217;s Jet Propulsion Laboratory and the Defense Advanced Research Projects Agency (DARPA).<br />
RAIN technology was able to offer the solution by minimizing the number of nodes in the chain connecting the client and server and also by making the existing nodes more robust and independent of each other. Also RAIN technology provides the novel feature of replacing a faulty node by a healthy one there by avoiding the break in information flow. In effect with the aid of RAIN connection between a client and server can be maintained despite all the existing problems.</p>
<p class="MsoNormal"><span style="font-size: 14pt">INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The Internet is changing the way that people manage and access information. In the last five years, the amount of traffic on the Internet has been growing at an exponential rate. The World Wide Web has evolved from a hobbyists&#8217; toy to become one of the dominating media of our society. Ecommerce has grown past adolescence and multimedia content has come of age. Communication, computation and storage are converging to reshape the lives of everyone. Looking forward, this growth will continue for some time. The question is: what can we do to scale the Internet infrastructure to meet this growth?.</p>
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<p class="MsoNormal" style="text-align: justify; line-height: 150%">There are four trends in the current growth of the Internet:<br />
1. Internet clients are becoming more numerous and varied. In addition to the ever-increasing number of PCs in offices and homes, there are new types of clients, such as mobile data units, (cell phones, PDAs, etc.) and home Internet appliances (set-top boxes, game consoles, etc.) In the next five years, these new types of Internet devices will pervade the Internet landscape.<br />
2. To support these new clients, new types of networks are being designed and implemented. Examples are wireless data networks, broadband networks and voice-over-IP networks. Technologies are being developed to connect these new networks with the existing Internet backbone.<br />
3. The content delivered over the Internet is evolving, partly because of the emergence of the new clients and new networks. There will be a growing presence of multimedia content, such as video, voice, music and gaming streams. The growth in content adds not only to the volume of the traffic, but also to the computation complexity in transporting and processing the traffic, thus accelerating the convergence between communication and computation.<br />
4. New Internet applications emerge, both on the server side and the client side. As the Internet penetrates deeper and deeper into everyone&#8217;s life, the demand for security, reliability, convenience and performance sky-rockets. With the popularity of cars comes the invention of traffic lights and stop signs, the gas station and the drive-thru. As Internet makes its way into daily lives, the demand will grow for firewalls and VPNs, intrusion detection and virus scanning, server load balancing and content management, quality of service and billing/reporting applications. The list goes on, and will keep expanding.</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title="Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/RELIABLE ARRAY OF INDEPENDENT NODES.doc ">RELIABLE ARRAY OF INDEPENDENT NODES</a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS</title>
		<link>http://www.techalone.com/2009/tracking-and-positioning-of-mobile-systems-in-telecommunication-networks/</link>
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		<pubDate>Sun, 08 Feb 2009 14:59:44 +0000</pubDate>
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		<guid isPermaLink="false">http://techalone.com/?p=180</guid>
		<description><![CDATA[Download Full Article TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS .doc ABSTRACT Mobile positioning technology has become an important area of research, for emergency as well as for commercial services. Mobile positioning in cellular networks will provide several services such as, locating stolen mobiles, emergency calls, different billing tariffs depending on where the [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title=" Cellonics " href="http://www.techalone.com/wp-content/uploads/2009/02/TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS.doc "> TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt"> ABSTRACT </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Mobile positioning technology has become an important area of research, for emergency as well as for commercial services. Mobile positioning in cellular networks will provide several services such as, locating stolen mobiles, emergency calls, different billing tariffs depending on where the call is originated, and methods to predict the user movement inside a region. The evolution to location-dependent services and applications in wireless systems continues to require the development of more accurate and reliable mobile positioning technologies. The major challenge to accurate location estimation is in creating techniques that yield acceptable performance when the direct path from the transmitter to the receiver is intermittently blocked. This is the Non-Line-Of-Sight (NLOS) problem, and it is known to be a major source of error since it systematically causes mobile to appear farther away from the base station (BS) than it actually is, thereby increasing the positioning error.<br />
In this paper, we present a simple method for mobile telephone tracking and positioning with high accuracy. Through this we will discuss some technology used for mobile positioning and tracking</p>
<p class="MsoNormal"><span style="font-size: 14pt"> INTRODUCTION </span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">As shown in Figure 3, the mobile telecommunication network includes a several base stations (BSs) T 1 to T N for providing mobile telecommunication service to a mobile subscriber through a mobile telephone M1, a base station controller (BSC) for controlling the BSs T 1 to T N, and a mobile telephone switching office (MTSO) for connecting the BSC to another BTS or a PSTN (Public Switched Telephone Network).</p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">In a cellular mobile telecommunication network, the whole service area is divided into a several coverage areas having respective base stations (BS). Each BS coverage area is called a &#8220;cell.&#8221; Each BS is provided with a frequency of a range between 450 to900 MHz. More than one cells can use same frequency. Only condition is that no two adjacent cells must have same frequencies. An MTSO controls these BSs so that a subscriber can continue his call without interruption while moving between different cells. The MTSO can reduce the time required for calling a subscriber by locating the cell of the subscriber. In case of an emergency like a fire, or a patient needing first aid treatment, the mobile subscriber should be accurately located. Tracking the location of a mobile subscriber within the boundary of a cell in a mobile telecommunication network is known as &#8220;location based services<br />
Mobile technology includes mainly two functions. They are call fixing and hands-off process. All the BSs are sending a signal of power 25 to 30w to the mobile unit. When a user switches ON his mobile, it will search for the strongest signal and got connected to that BS. Then the mobile unit sends an identification signal to the BS. When he fixes a call, the BS accepts the request and sends the request to the BSC and MTSO. Then the MTSO will searches where the subscriber is and connects the call.</p>
<p class="MsoNormal" style="text-align: justify">When a user moves to another cell the MTSO will change the frequency allotted to it and allots the frequency of the new BS.For both these processes GEOLOCATION of the mobile unit is essential..</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Seminar Report On</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> <a title="Click here to Download " href="http://www.techalone.com/wp-content/uploads/2009/02/TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS.doc "> TRACKING AND POSITIONING OF MOBILE SYSTEMS IN TELECOMMUNICATION NETWORKS </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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		<title>Space Mouse</title>
		<link>http://www.techalone.com/2009/space-mouse/</link>
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		<pubDate>Mon, 02 Feb 2009 16:54:54 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[Computer Engineering]]></category>
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		<description><![CDATA[Download Full Article Space Mouse .doc INTRODUCTION Every day of your computing life, you reach out for the mouse whenever you want to move the cursor or activate something. The mouse senses your motion and your clicks and sends them to the computer so it can respond appropriately. An ordinary mouse detects motion in the [...]]]></description>
			<content:encoded><![CDATA[<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Article</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click here to Download" href="http://www.techalone.com/wp-content/uploads/2009/02/space mouse.doc ">Space Mouse </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
<p class="MsoNormal"><span style="font-size: 14pt">INTRODUCTION</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Every day of your computing life, you reach out for the mouse whenever you want to move the cursor or activate something. The mouse senses your motion and your clicks and sends them to the computer so it can respond appropriately. An ordinary mouse detects motion in the X and Y plane and acts as a two dimensional controller. It is not well suited for people to use in a 3D graphics environment. Space Mouse is a professional 3D controller specifically designed for manipulating objects in a 3D environment. It permits the simultaneous control of all six degrees of freedom &#8211; translation rotation or a combination. . The device serves as an intuitive man-machine interface</p>
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<p class="MsoNormal" style="text-align: justify"> </p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">The predecessor of the spacemouse was the DLR controller ball. Spacemouse has its origins in the late seventies when the DLR (German Aerospace Research Establishment) started research in its robotics and system dynamics division on devices with six degrees of freedom (6 dof) for controlling robot grippers in Cartesian space. The basic principle behind its construction is mechatronics engineering and the multisensory concept. The spacemouse has different modes of operation in which it can also be used as a two-dimensional mouse.</p>
<p class="MsoNormal"><span style="font-size: 14pt">How does computer mouse work?</span></p>
<p class="MsoNormal" style="text-align: justify; line-height: 150%">Mice first broke onto the public stage with the introduction of the Apple Macintosh in 1984, and since then they have helped to completely redefine the way we use computers. Every day of your computing life, you reach out for your mouse whenever you want to move your cursor or activate something. Your mouse senses your motion and your clicks and sends them to the computer so it can respond appropriately</p>
<p><span style="font-size: 14pt; color: red" lang="EN-GB">Download Full Seminar Report On:</span><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span> </span></span><strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span><a title=" Click here to Download" href="http://www.techalone.com/wp-content/uploads/2009/02/space mouse.doc ">Space Mouse </a>.</span></span></strong><span style="font-size: 12pt; color: red; font-family: 'Times New Roman','serif'" lang="EN-GB"><span>doc</span></span></p>
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