Robust beamforming based on transmit power analysis for multiuser multiple-input–single-output interference channels with energy harvesting

In this study, the authors study the robust transmit beamforming and receive power splitting design for simultaneous wireless information and power transfer in multiuser multiple-input–single-output interference channel with imperfect channel-state information at the transmitter. Following the worst...

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Published inIET communications Vol. 10; no. 10; pp. 1221 - 1228
Main Authors Zhu, Zhengyu, Wang, Zhongyong, Chu, Zheng, Gao, Xiangchuan, Zhang, Yanbin, Cui, Jianhua
Format Journal Article
LanguageEnglish
Published The Institution of Engineering and Technology 01.07.2016
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ISSN1751-8628
1751-8636
DOI10.1049/iet-com.2015.0878

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Summary:In this study, the authors study the robust transmit beamforming and receive power splitting design for simultaneous wireless information and power transfer in multiuser multiple-input–single-output interference channel with imperfect channel-state information at the transmitter. Following the worst-case model, they minimise the average total transmit power subject to a set of energy harvesting constraints and signal-to-interference-and-noise ratio constraints. On the basis of the Lagrangian multiplier method, they propose a robust design method based on tight bounds that is able to achieve an approximate optimum. To reduce the complexity, they transform this original problem into a relaxed semi-definite programming problem based on loose bounds, which can be solved efficiently. It is shown from simulation results that their proposed methods outperform the non-robust scheme.
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ISSN:1751-8628
1751-8636
DOI:10.1049/iet-com.2015.0878