Search Books
Mobile Web Services: Archit… Tailings and Mine Waste 1998

Analysis and Transceiver Design for the MIMO Broadcast Channel (Foundations in Signal Processing, Communications and Networking)

Author Raphael Hunger
Publisher Springer
Category Technology & Engineering
📄 Viewing lite version Full site ›
🌎 Shop on Amazon — choose country
159.00 USD
🛒 Buy New on Amazon 🇺🇸 🏷 Buy Used — $90.00

✓ Usually ships in 24 hours

Share:
Book Details
PublisherSpringer
ISBN / ASIN3642316913
ISBN-139783642316913
AvailabilityUsually ships in 24 hours
Sales Rank6,135,060
MarketplaceUnited States 🇺🇸

Description

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 revealed.

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 channel matrices.

Fourth Dimension in Building: Strategies for Avoiding …
View
Design and Evaluation of Rigid and Flexible Pavements,…
View
Nuclear Nonproliferation: Status Of U.s. Efforts To Im…
View
Time-Domain Numerical Methods for Modelling Antennas, …
View
The Rise of the Standard Model: A History of Particle …
View
Synthesis, Properties and Crystal Chemistry of Perovsk…
View
Error Propagation in Environmental Modelling with GIS …
View
Crops And Environmental Change: An Introduction To Eff…
View
Multicarrier Modulation with Low PAR: Applications to …
View