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Statistical robust beamforming for b...
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Grundinger, Andreas.
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Statistical robust beamforming for broadcast channels and applications in satellite communication
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Statistical robust beamforming for broadcast channels and applications in satellite communication/ by Andreas Grundinger.
作者:
Grundinger, Andreas.
出版者:
Cham :Springer International Publishing : : 2020.,
面頁冊數:
xxv, 245 p. :ill., digital ;24 cm.
內容註:
Introduction -- Multi-User Downlink Communication -- Models for Incomplete Channel Knowledge -- Precoder Design for Ergodic Rates with Multiplicative Fading 53 -- Average Mean Square Error Transceiver Design for Additive Fading -- Outage Constrained Beamformer Design -- Applications in Satellite Communication -- Summary, Conclusions, and Open Research on Robust Beamforming -- Conclusion.
Contained By:
Springer eBooks
標題:
Beamforming. -
電子資源:
https://doi.org/10.1007/978-3-030-29578-3
ISBN:
9783030295783
Statistical robust beamforming for broadcast channels and applications in satellite communication
Grundinger, Andreas.
Statistical robust beamforming for broadcast channels and applications in satellite communication
[electronic resource] /by Andreas Grundinger. - Cham :Springer International Publishing :2020. - xxv, 245 p. :ill., digital ;24 cm. - Foundations in signal processing, communications and networking,v.221863-8538 ;. - Foundations in signal processing, communications and networking ;v.22..
Introduction -- Multi-User Downlink Communication -- Models for Incomplete Channel Knowledge -- Precoder Design for Ergodic Rates with Multiplicative Fading 53 -- Average Mean Square Error Transceiver Design for Additive Fading -- Outage Constrained Beamformer Design -- Applications in Satellite Communication -- Summary, Conclusions, and Open Research on Robust Beamforming -- Conclusion.
This book investigates adaptive physical-layer beamforming and resource allocation that ensure reliable data transmission in the multi-antenna broadcast channel. The book provides an overview of robust optimization techniques and modelling approximations to deal with stochastic performance metrics. One key contribution of the book is a closed-form description of the achievable rates with unlimited transmit power for a rank-one channel error model. Additionally, the book provides a concise duality framework to transform mean square error (MSE) based beamformer designs, e.g., quality of service and balancing optimizations, into equivalent uplink filter designs. For the algorithmic solution, the book analyses the following paradigm: transmission to receivers with large MSE targets (low demands) is switched off if the transmit power is low. The book also studies chance constrained optimizations for limiting the outage probability. In this context, the book provides two novel conservative outage probability approximations, that result in convex beamformer optimizations. To compensate for the remaining inaccuracy, the book introduces a post-processing power allocation. Finally, the book applies the introduced beamformer designs for SatCom, where interference from neighboring spotbeams and channel fading are the main limitations.
ISBN: 9783030295783
Standard No.: 10.1007/978-3-030-29578-3doiSubjects--Topical Terms:
2191580
Beamforming.
LC Class. No.: TK5103.2 / .G786 2019
Dewey Class. No.: 621.3822
Statistical robust beamforming for broadcast channels and applications in satellite communication
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This book investigates adaptive physical-layer beamforming and resource allocation that ensure reliable data transmission in the multi-antenna broadcast channel. The book provides an overview of robust optimization techniques and modelling approximations to deal with stochastic performance metrics. One key contribution of the book is a closed-form description of the achievable rates with unlimited transmit power for a rank-one channel error model. Additionally, the book provides a concise duality framework to transform mean square error (MSE) based beamformer designs, e.g., quality of service and balancing optimizations, into equivalent uplink filter designs. For the algorithmic solution, the book analyses the following paradigm: transmission to receivers with large MSE targets (low demands) is switched off if the transmit power is low. The book also studies chance constrained optimizations for limiting the outage probability. In this context, the book provides two novel conservative outage probability approximations, that result in convex beamformer optimizations. To compensate for the remaining inaccuracy, the book introduces a post-processing power allocation. Finally, the book applies the introduced beamformer designs for SatCom, where interference from neighboring spotbeams and channel fading are the main limitations.
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