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Software Receiver Design: Build Your Own Digital Communication System in Five Easy Steps
by C. Richard Johnson Jr, William A. Sethares and Andrew G. Klein
English | 2011 | ISBN: 1107007526, 0521189446 | 480 pages | PDF | 6.54 MB
Have you ever wanted to know how modern digital communications systems work? Find out with this step-by-step guide to building a complete digital radio that includes every element of a typical, real-world communication system. Chapter by chapter, you will create a MATLAB realization of the various pieces of the system, exploring the key ideas along the way, as well as analyzing and assessing the performance of each component. Then, in the final chapters, you will discover how all the parts fit together and interact as you build the complete receiver. In addition to coverage of crucial issues, such as timing, carrier recovery and equalization, the text contains over 400 practical exercises, providing invaluable preparation for industry, where wireless communications and software radio are becoming increasingly important. A variety of extra resources are also provided online, including lecture slides and a solutions manual for instructors.
Contents
Step 1: The Big Picture 1
1 A Digital Radio 2
1.1 What Is a Digital Radio? 2
1.2 An Illustrative Design 3
1.3 Walk This Way 12
Step 2: The Basic Components 15
2 A Telecommunication System 16
3 The Six Elements 40
Step 3: The Idealized System 58
4 Modeling Corruption 59
5 Analog (De)modulation 80
6 Sampling with Automatic Gain Control 98
7 Digital Filtering and the DFT 130
8 Bits to Symbols to Signals 152
9 Stuff Happens 165
Step 4: The Adaptive Components 191
10 Carrier Recovery 192
11 Pulse Shaping and Receive Filtering 226
12 Timing Recovery 250
13 Linear Equalization 270
14 Coding 303
Step 5: Putting It All Together 341
15 Make It So 342
16 A Digital Quadrature Amplitude Modulation Radio 357
Appendices 404
A Transforms, Identities, and Formulas 404
B Simulating Noise 412
C Envelope of a Bandpass Signal 416
D Relating the Fourier Transform to the DFT 421
E Power Spectral Density 425
F TheZ-Transform 428
G Averages and Averaging 442
H The B3IG Transmitter 451
Index 460
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