Principles of Mobile CommunicationPrinciples of Mobile Communication, Second Edition is an authoritative treatment of the fundamentals of mobile communications. The book stresses the "fundamentals" of wireless and mobile communications engineering important for the design of "any" wireless system. The book differs from others in the field by stressing mathematical modeling and analysis. It includes many detailed derivations from first principles, extensive literature references, and provides a level of depth that is necessary for graduate students wishing to pursue research on this topic. Its focus will benefit students taking formal instruction and practicing engineers who are likely to already have familiarity with the standards and are seeking to increase their knowledge of this important subject. Special features of this new edition:
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Contents
INTRODUCTION | 1 |
1 | 16 |
5 | 23 |
Laboratory Simulation of Shadowing | 90 |
39 | 92 |
44 | 103 |
50 | 112 |
COST231WalfishIkegami | 114 |
ERROR CONTROL CODING | 391 |
SPREAD SPECTRUM TECHNIQUES | 457 |
Complementary Code Keying CCK | 475 |
66 | 478 |
5 | 491 |
TDMA CELLULAR ARCHITECTURES | 515 |
of Cluster Planned Architecture | 539 |
CDMA CELLULAR ARCHITECTURES 567 | 566 |
COCHANNEL INTERFERENCE | 126 |
RiceanRayleigh Interferers | 139 |
53 | 140 |
60 | 153 |
DIGITAL SIGNALING | 227 |
61 | 240 |
9 | 256 |
ANTENNA DIVERSITY | 281 |
EQUALIZATION | 300 |
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Common terms and phrases
approximation assume autocorrelation average AWGN AWGN channel bandwidth binary bit error probability BPSK CDMA cell cellular systems co-channel interference codewords complex envelope component Consider convolutional codes correlation data symbols decoding defined delay denote density diagram discrete-time distribution diversity branches Doppler encoder equal error event error-state Euclidean distance fading channels flat fading flat fading channels Gaussian random variables Hamming distance Hence impulse response interleaver interval length linear matched filter matrix microcell minimum MLSE MLSE receiver modulation multipath noise whitening filter obtained OFDM orthogonal output pairwise error probability parameters path loss performance probability of outage propagation radio random variables Rayleigh fading received signal Ricean fading samples shaping function shown in Fig signal constellation signal vectors spectral spread spectrum spreading sequences squared Euclidean distance symbol sequence T-spaced transfer function transmitted trellis code Turbo codes uncorrelated union bound variance Viterbi algorithm waveforms zero