By Marvin K. Simon;Mohamed-Slim Alouini
The 4 brief years on the grounds that electronic verbal exchange over Fading Channels turned an immediate vintage have obvious a digital explosion of vital new paintings at the topic, either via the authors and through various researchers worldwide. most well known between those is a brilliant deal of growth within the quarter of transmit variety and space-time coding and the linked a number of input-multiple output (MIMO) channel. This new version gathers those and different effects, formerly scattered all through various courses, right into a unmarried handy and informative volume.
Like its predecessor, this moment variation discusses intimately coherent and noncoherent conversation structures in addition to a wide number of fading channel versions general of conversation hyperlinks present in the genuine global. assurance contains unmarried- and multichannel reception and, in terms of the latter, a wide number of range varieties. the instant producing functionality (MGF)-based strategy for functionality research, brought by means of the authors within the first version and spoke of in actually thousands of courses, nonetheless represents the spine of the book's presentation. vital gains of this new version include:
* An all-new, finished bankruptcy on transmit variety, space-time coding, and the MIMO channel, targeting functionality evaluation
* assurance of latest and more desirable range schemes
* functionality analyses of formerly recognized schemes in new and assorted fading scenarios
* a brand new bankruptcy at the outage chance of mobile cellular radio systems
* a brand new bankruptcy at the potential of fading channels
* and lots more and plenty more
electronic conversation over Fading Channels, moment variation is an critical source for graduate scholars, researchers investigating those platforms, and training engineers accountable for comparing their performance.Content:
Chapter 1 creation (pages 1–15):
Chapter 2 Fading Channel Characterization and Modeling (pages 17–43):
Chapter three sorts of communique (pages 45–79):
Chapter four replacement Representations of Classical capabilities (pages 82–122):
Chapter five beneficial Expressions for comparing common errors likelihood functionality (pages 123–167):
Chapter 6 New Representations of a few chance Density and Cumulative Distribution capabilities for Correlative Fading purposes (pages 169–185):
Chapter 7 optimal Receivers for Fading Channels (pages 188–222):
Chapter eight functionality of Single?Channel Receivers (pages 223–309):
Chapter nine functionality of Multichannel Receivers (pages 311–635):
Chapter 10 Outage functionality of Multiuser communique structures (pages 638–680):
Chapter eleven optimal Combining—A range approach for conversation over Fading Channels within the Presence of Interference (pages 681–734):
Chapter 12 Direct?Sequence Code?Division a number of entry (DS?CDMA) (pages 735–756):
Chapter thirteen Coded verbal exchange over Fading Channels (pages 758–795):
Chapter 14 Multichannel Transmission—Transmit range and Space?Time Coding (pages 797–862):
Chapter 15 means of Fading Channels (pages 863–881):
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Extra info for Digital Communication over Fading Channels, Second Edition
A number of these, including contour integration using residues, saddle point integration, and numerical integration by Gauss–Chebyshev quadrature rules, are discussed in the literature [3–6] and will be covered later on in the text. 10) cover a wide variety of problems dealing with the performance of digital communication systems over fading channels, there are still some situations that don’t lend themselves to either of these two unifying methods. An example of such is the evaluation of the bit error probability performance of an M-ary noncoherent orthogonal system operating over an L-path diversity channel (see Chapter 9).
H. Kim, and P. Ho, “Exact calculation of the union bound on performance of trellis-coded modulation in fading channels,” IEEE Trans. , vol. 46, no. 5, May 1998, pp. 576-579; see also Proc. IEEE ICUPC ’96, vol. 2, Cambridge, MA, September 1996, pp. 875–880. 7. M. K. -S. Alouini, “Bit error probability of noncoherent M-ary orthogonal modulation over generalized fading channels,” Int. J. Commun. and Networks, vol. 1, no. 2, June 1999, pp. 111–117. 8. J. F. Weng and S. H. Leung, “Analysis of M-ary FSK square law combiner under Nakagami fading channels,” Electron.
Discussion that follows applies, in principle, equally well to average symbol error probability (SEP). The specific differences between the two are explored in detail in the chapters dealing with system performance. Furthermore, the terms bit error rate (BER) and symbol error rate (SER) are often used in the literature as alternatives to BEP and SEP. Rather than choose a preference, in this text we shall use these terms interchangeably. 2 The 3 The SYSTEM PERFORMANCE MEASURES 7 is not a simple average of the per channel performance measure as was true for average SNR.
Digital Communication over Fading Channels, Second Edition by Marvin K. Simon;Mohamed-Slim Alouini