Artículo: AMZ-0134431790

Introduction to Wireless Digital Communication: A Signal Processing Perspective

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Paperback

Paperback

eTextbook

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  • The Accessible Guide to Modern Wireless Communication for Undergraduates, Graduates, and Practicing Electrical EngineersWireless communication is a critical discipline of electrical engineering and computer science, yet the concepts have remained elusive for students who are not specialists in the area. This text makes digital communication and receiver algorithms for wireless communication broadly accessible to undergraduates, graduates, and practicing electrical engineers. Notably, the book builds on a signal processing foundation and does not require prior courses on analog or digital communication.Introduction to Wireless Digital Communication establishes the principles of communication, from a digital signal processing perspective, including key mathematical background, transmitter and receiver signal processing algorithms, channel models, and generalizations to multiple antennas. Robert Heath’s “less is more” approach focuses on typical solutions to common problems in wireless engineering.Heath presents digital communication fundamentals from a signal processing perspective, focusing on the complex pulse amplitude modulation approach used in most commercial wireless systems. He describes specific receiver algorithms for implementing wireless communication links, including synchronization, carrier frequency offset estimation, channel estimation, and equalization. While most concepts are presented for systems with single transmit and receive antennas, Heath concludes by extending those concepts to contemporary MIMO systems.To promote learning, each chapter includes previews, bullet-point summaries, examples, and numerous homework problems to help readers test their knowledge. Basics of wireless communication: applications, history, and the central role of signal processingDigital communication essentials: components, channels, distortion, coding/decoding, encryption, and modulation/demodulationSignal processing: linear time invariant systems, probability/random processes, Fourier transforms, derivation of complex baseband signal representation and equivalent channels, and multi-rate signal processingLeast-squared estimation techniques that build on the linear algebra typically taught to electrical engineering undergraduatesComplex pulse amplitude modulation: symbol mapping, constellations, signal bandwidth, and noiseSynchronization, including symbol, frame, and carrier frequency offsetFrequency selective channel estimation and equalizationMIMO techniques using multiple transmit and/or receive antennas, including SIMO, MISO, and MIMO-OFDM Register your product at informit.com/register for convenient access to downloads, updates, and corrections as they become available.
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A comprehensive view of communication in wireless channels that accounts for practical impairments Algorithms for channel estimation, equalisation, frame synchronisation, and carrier frequency offset synchronisation Focused coverage of widely-deployed quadrature pulse amplitude modulation technology Least squared estimation techniques, building on the linear algebra typically taught to electrical engineering undergraduates Modular, "less is more" coverage of realistic example cases, rather than an attempt to help students solve every single problem that might arise Introduces wireless communication at the right level for undergraduates, relying on widely-taught DSP concepts and just the right mathematical depth Covers essential algorithms for channel estimation, equalization, frame synchronization, and carrier frequency offset synchronization Focuses on widely-used Quadrature Pulse Amplitude Modulation (QPAM) techniques Supported by engaging examples, homework problems, instructor notes and PowerPoint presentations, Solutions Manual, MATLAB Manual, and more The latest book in the respected Prentice Hall Communications Engineering and Emerging Technologies Series from Ted Rappaport