Transceiver Design for Wireless Power Transfer for Multiuser MIMO Communication Systems

Anming Dong, Haixia Zhang
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引用次数: 0

Abstract

This chapter describes transceiver design methods for simultaneous wireless power transmission (WPT) and information transmission in two typical multiuser MIMO networks, that is, the MIMO broadcasting channel (BC) and interference channel (IC) networks. The design problems are formulated to minimize the transmit power consumption at the transmitter(s) while satisfying the quality of service (QoS) requirements of both the information decoding (ID) and WPT of all users. The mean-square error (MSE) and the signal-to-interference-noise ratio (SINR) criteria are adopted to characterize the ID performance of the BC network and the IC network, respectively. The designs are cast as nonconvex optimization problems due to the coupling of multiple variables with respect to transmit precoders, ID receivers, and power splitting factors, which are difficult to solve directly. The feasibility conditions of these deign problems are discussed, and effective solving algorithms are developed through alternative optimization (AO) framework and semidefinite programming relaxation (SDR) techniques. Low-complexity algorithms are also developed to alleviate the computation burden in solving the semidefinite programming (SDP) problems. Finally, simulation results validating those proposed algorithms are included.
多用户MIMO通信系统无线电力传输的收发器设计
本章介绍了两种典型的多用户MIMO网络(即MIMO广播信道(BC)和干扰信道(IC)网络)中无线功率传输和信息传输同时进行的收发器设计方法。设计问题的制定是为了在满足所有用户的信息解码(ID)和WPT的服务质量(QoS)要求的同时,最大限度地减少发射机的发射功耗。采用均方误差(MSE)和信噪比(SINR)标准分别表征BC网络和IC网络的ID性能。由于发射预编码器、ID接收器和功率分裂因素等多个变量的耦合,这些设计被视为非凸优化问题,难以直接解决。讨论了这些设计问题的可行性条件,并利用备选优化(AO)框架和半定规划松弛(SDR)技术开发了有效的求解算法。为了减轻求解半定规划问题的计算负担,还开发了低复杂度算法。最后给出了仿真结果,验证了算法的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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