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Adaptive Wireless Transceivers: Turbo-Coded, Turbo-Equalized and Space-Time Coded TDMA, CDMA, and OFDM Systems
 
 
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Adaptive Wireless Transceivers: Turbo-Coded, Turbo-Equalized and Space-Time Coded TDMA, CDMA, and OFDM Systems [Hardcover]

Lajos L. Hanzo (Author), C. H. Wong (Author), M. S. Yee (Author)

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Book Description

0470846895 978-0470846896 April 18, 2002 1
Adaptive Wireless Transceivers provides the reader with a broad overview of near-instantaneously adaptive transceivers in the context of TDMA, CDMA and OFDM systems. The adaptive transceivers examined employ powerful turbo codecs, turbo equalisers and space-time codecs, equipping the reader with a future-proof technological road map. It demonstrates that adaptive transceivers are capable of mitigating the channel quality fluctuations of the wireless channel as a lower-complexity alternative to space-time coding. By contrast, if the higher complexity of multiple transmitters and multiple receiver-assisted systems is deemed acceptable, the advantages of adaptability erode.
  • Provides an in-depth introduction to channel equalisers and Kalman filtering and discusses the associated complexity versus performance trade-offs
  • Introduces wideband near-instantaneously adaptive transceivers and studies their performance both with and without turbo channel coding
  • Describes how to optimise adaptive modulation mode switching and highlights a range of practical considerations
  • Introduces neural network based channel equalisers and discusses Radial Basis Function (RBF) assisted equalisers embedded into adaptive modems supported by turbo channel coding and turbo channel equalisation
  • Employs the above adaptive principles also in the context of CDMA and OFDM transceivers and discusses the pros and cons of space-time coding versus adaptive modulation
Researchers, advanced students and practising development engineers working in wireless communications will all find this valuable text an informative read.  

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Editorial Reviews

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"...provides an overview of near-instantaneously adaptive transceivers." (SciTech Book News, Vol. 26, No. 2, June 2002)

From the Back Cover

Adaptive Wireless Transceivers provides the reader with a broad overview of near-instantaneously adaptive transceivers in the context of TDMA, CDMA and OFDM systems. The adaptive transceivers examined employ powerful turbo codecs, turbo equalisers and space-time codecs, equipping the reader with a future-proof technological road map. It demonstrates that adaptive transceivers are capable of mitigating the channel quality fluctuations of the wireless channel as a lower-complexity alternative to space-time coding. By contrast, if the higher complexity of multiple transmitters and multiple receiver-assisted systems is deemed acceptable, the advantages of adaptability erode.
  • Provides an in-depth introduction to channel equalisers and Kalman filtering and discusses the associated complexity versus performance trade-offs

  • Introduces wideband near-instantaneously adaptive transceivers and studies their performance both with and without turbo channel coding

  • Describes how to optimise adaptive modulation mode switching and highlights a range of practical considerations

  • Introduces neural network based channel equalisers and discusses Radial Basis Function (RBF) assisted equalisers embedded into adaptive modems supported by turbo channel coding and turbo channel equalisation

  • Employs the above adaptive principles also in the context of CDMA and OFDM transceivers and discusses the pros and cons of space-time coding versus adaptive modulation
Researchers, advanced students and practising development engineers working in wireless communications will all find this valuable text an informative read.

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Inside This Book (learn more)
First Sentence:
In recent years the concept of intelligent multi-mode, multimedia transceivers (IMMT) has emerged in the context of wireless systems [1-6]. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
feedforward order, fixed modulation modes, turbo interleaver size, quality estimation latency, optimum switching levels, perceived channel quality, channel quality measure, channel output vectors, wideband channel environment, power control zone, turbo equaliser, desired channel states, numerical upper bound performance, individual modulation mode, modem mode switching regime, scalar centres, turbo iterations, modem mode switching thresholds, multilevel modems, phase noise mask, turbo coding parameters, channel quality estimation, coded adaptive modulation, robust modulation mode, transmission burst types
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Typical Urban, Bad Urban, Time Division Multiple Access, Wireless Asynchronous Transfer Mode, Data Table, Data Near-Error-Free, Number Of Iterations Number Of Iterations, Orthogonal Frequency Division Multiplexing, Bit-Interleaved Coded Modulation, Coding Disabled, Pilot Symbol Assisted Modulation, Data Training Data Guard, Error Free Coded, Fixed Mod, M-ary Jacobian, Numerical Simulated, Pan European, Powell Multi-dimensions Line Minimization, Power Util, Reduced-complexity Reduced-complexity, Reed Solomon, State Transmitted, Switching Metric Based, Switching Util, Target Coded Switching Thresholds
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