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Beamforming Design for Max-Min Fair SWIPT in Green Cloud-RAN with Wireless Fronthaul

机译:具有无线前传功能的Green Cloud-RAN中的Max-Min Fair SWIPT的波束成形设计

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摘要

In this paper, the joint beamforming design for max-min fair simultaneous wireless information and power transfer (SWIPT) is investigated in a green cloud radio access network (Cloud-RAN) with millimeter wave (mmWave) wireless fronthaul. To achieve a balanced user experience for separately located data receivers (DRs) and energy receivers (ERs) in the network, joint transmit beamforming vectors will be optimized to maximize the minimum data rate among all the DRs, while satisfying each ER with sufficient RF energy at the same time. Then, a two-step iterative algorithm is proposed to solve the original non- convex optimization problem with the fronthaul capacity constraint in an l0-norm form. Specifically, the l0-norm constraint can be approximated by the reweighted l1-norm, from which the optimal max-min data rate and the corresponding joint beamforming vector can be derived via semidefinite relaxation (SDR) and bi-section search. Finally, extensive numerical simulations are performed to verify the superiority of the proposed joint beamforming design to other separate beamforming strategies.
机译:本文在绿色云无线电接入网络(MMWAVE)无线Fronthaul中,研究了MAX-MIN公平同时无线信息和电力传输(SWIT)的关节波束形成设计。为了实现网络中的单独定位的平衡用户体验和网络中的能量接收器(ERS),将优化关节传输波束成形矢量,以最大化所有DRS之间的最小数据速率,同时满足每个er的rf能量。同时。然后,提出了一种两步迭代算法,以解决L的Fronthula容量约束原始非凸优化问题 0 -norm形式。具体来说,L 0 -norm约束可以通过重新超重的l近似 1 -norm,可以通过Semidefinite弛豫(SDR)和双部分搜索来导出最佳MAX-MIN数据速率和相应的关节波束形成载体。最后,进行广泛的数值模拟以验证所提出的关节波束形成设计的优越性与其他单独的波束形成策略。

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