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Mobile Fading Channels: Modelling, Analysis and Simulation by Matthias Paetzold,

Mobile Fading Channels: Modelling, Analysis and Simulation by Matthias Paetzold,
All relevant components of a mobile radio system, from digital modulation techniques over channel coding through to network aspects, are determined by the propagation characteristics of the channel. Therefore, a precise knowledge of mobile radio channels is crucial for the development, evaluation and test of current and future mobile radio communication systems. This volume deals with the modelling, analysis, and simulation of mobile fading channels and provides a fundamental understanding of many issues that are currently being investigated in the area of mobile fading channel modelling. The author strongly emphasises the detailed derivation of the presented channel models and conveys a high degree of mathematical unity to the reader. Introduces the fundamentals of stochastic and deterministic channel models Features the modelling and simulation of frequency-nonselective fading channels (Rayleigh channels, Rice channels, generalized Rice channels, Nakagami channels, various types of Suzuki channels, classical and modified Loo model) Presents the modelling and simulation of frequency-selective fading channels (WSSUS models, DGUS models, channel models according to COST 207) Discusses the methods used for the design and realization of efficient channel simulators Examines the design, realization, and analysis of fast channel simulators Includes MATLABr programs for the evaluation and simulation of mobile fading channels MATLABr is a registered trademark of The MathWorks, Inc. Telecommunication engineers, computer scientists, and physicists will all find this text both informative and instructive. It is also be an indispensable reference for postgraduate and seniorundergraduate students of telecommunication and electrical engineering.



Space-Time Wireless Channels by Gregory D. Durgin, X
Space-Time Wireless Channels by Gregory D. Durgin, X
A practical, "first-principles" approach to space-time wireless channel design.A practical approach to space-time wireless channel designIntegrates essential principles from communications, electromagnetics, and random process theoryIncludes detailed coverage of diversity, multipath applications, and antenna array designContains extensive examples, illustrations, and problem sets Next-generation broadband radio systems must deliver unprecedented performance and higher data rates, while coping with increased spectral congestion. To achieve these goals, engineers need an in-depth understanding of radio channels that fade in time, frequency, and space. In "Space-Time Wireless Channels," leading researcher Gregory D. Durgin presents a pragmatic, first-principles approach that integrates crucial concepts and techniques from communications, electromagnetics, and random process theory. Durgin focuses on comprehension and practicality, offering extensive examples, illustrations, and problem sets, while avoiding gratuitious mathematics and moving most derivations to end-of-chapter appendices. Coverage includes: Fundamentals of space, time, and frequency transmission and random process theoryElectromagnetic description of space-time channels and the physics of small-scale fadingFirst- and second-order statistics of fading channelsAngle spectrum concepts and applications, including vector/scalar space and multipath shape factorsAntenna diversity, temporal diversity, and bit error ratesMultipath channels: separation, signaling, block coding, and antenna array design Appendices list special functions, Fourier transform examples, and random process theory concepts, as well as all relevantmathematical symbols, conventions, and acronyms.



Channel spacing - Channel spacing is a term used in radio frequency planning. It describes the frequency difference between adjacent allocations in a frequency plan.

In-band on-channel - In-band on-channel (IBOC) is a method of transmitting digital radio and analog radio broadcast signals simultaneously on the same frequency. By utilizing subcarriers and sidebands, digital information is "piggybacked" on a normal AM or FM analog signal, thus avoiding any complicated extra frequency allocation issues.

Virtual channel - In telecommunications, a virtual channel is a channel designation which differs from the actual radio channel or frequency on which the signal travels.

Channel 3/4 output - A channel 3/4 output was a common output selection for most audiovisual devices intended to be connected to a TV using a Radio frequency (RF) signal. This channel option was provided because it was rare to have broadcast channels three and four used in the same market.



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