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Titlebook: SDMA for Multipath Wireless Channels; Limiting Characteris Igor P. Kovalyov Book 2004 Springer-Verlag Berlin Heidelberg 2004 Electrodynamic

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1860-4862 io channel parameters. The book also investigates stochastic models for 2-D and 3-D multipath random radio channels. The non-ray method for building a stochastic model, based on spherical harmonics, is presented here for the first time. .978-3-642-62330-1978-3-642-18863-3Series ISSN 1860-4862 Series E-ISSN 1860-4870
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Capacity of Multiple Input Multiple Output Communication Systems,This chapter provides the insights necessary for estimating the capacity of multiple input multiple output (MIMO) systems. The representation of the MIMO system is considered here as a multitude of individual and independent subchannels. A method for handling the problem of optimal power distribution with various types of interference is presented.
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Body of Mathematics for Analysis of Three-Dimensional Multipath Wireless Channels: Spherical Harmonm the strength vectors E and H to electric and magnetic potentials). Second, spherical harmonics make an orthogonal system of functions on the sphere. The coefficients of the electromagnetic field expansion into spherical harmonics allow us to represent a continuous field in terms of a discrete set of complex numbers.
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Book 2004tion to creating more efficient SDMA algorithms it is vital to determine and understand the theoretical limit of performance improvement. The greatest challenge is extending Shannon’s channel capacity equation to cover the wireless channels that use spatial signal processing. This book defines formu
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Limit Capacity and Statistical Models of Wireless Channels,utational equations presented in the book on trust. This chapter serves the reference purposes and contains major design formulae. Using the calculation apparatus presented here the reader will be able to estimate the limit capacity and the required optimal quantity of spatial subchannels all by him
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