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Raphael Hunger - Analysis and Transceiver Design for the MIMO Broadcast Channel - 9783642436345 - V9783642436345
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Analysis and Transceiver Design for the MIMO Broadcast Channel

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Description for Analysis and Transceiver Design for the MIMO Broadcast Channel Paperback. This award-winning volume analyzes the MIMO channel's maximum high-power performance and answers the fundamental question of feasibility in quality-of-service based optimizations characterized by inelastic traffic that features strict delay constraints. Series: Foundations in Signal Processing, Communications and Networking. Num Pages: 332 pages, biography. BIC Classification: TJK; TTBM. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 18. Weight in Grams: 510.

This book deals with the optimization-based joint design of the transmit and receive filters in   MIMO broadcast channel in which the user terminals may be equipped with several antenna elements. Furthermore, the maximum performance of the system in the high power regime as well as the set of all feasible quality-of-service requirements is analyzed.

First, a fundamental duality is derived that holds between the MIMO broadcast channel and virtual MIMO multiple access channel. This duality construct allows for the efficient solution of problems originally posed in the broadcast channel in the dual domain where a possibly hidden convexity can often be ... Read more

On the basis of the established duality result, the gradient-projection algorithm is introduced as a tool to solve constrained optimization problems to global optimality under certain conditions. The gradient-projection tool is then applied to solving the weighted sum rate maximization problem which is a central optimization that arises in any network utility maximization.

In the high power regime, a simple characterization of the obtained performance becomes possible due to the fact that the weighted sum rate utility converges to an affine asymptote in the logarithmic power domain. We find closed form expressions for these asymptotes which allows for a quantification of the asymptotic rate loss that linear transceivers have to face with respect to dirty paper coding.

In the last part, we answer the fundamental question of feasibility in quality-of-service based optimizations with inelastic traffic that features strict delay constraints. Under the assumption of linear transceivers, not every set of quality-of-service requirements might be feasible making the power minimization problem with given lower bound constraints on the rate for example infeasible  in these cases. We derive a complete description of the quality-of-service feasibility region for  arbitrary channelmatrices.

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Product Details

Format
Paperback
Publication date
2014
Publisher
Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Germany
Number of pages
332
Condition
New
Series
Foundations in Signal Processing, Communications and Networking
Number of Pages
322
Place of Publication
Berlin, Germany
ISBN
9783642436345
SKU
V9783642436345
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

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