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Robust Beamforming Design for Secure V2X Downlink System with Wireless Information and Power Transfer under a Nonlinear Energy Harvesting Model

机译:非线性能量收集模型下具有无线信息和功率传输功能的安全V2X下行链路系统的稳健波束成形设计

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摘要

Vehicle to everything (V2X) has been deemed a promising technology due to its potential to achieve traffic safety and efficiency. This paper considers a V2X downlink system with a simultaneous wireless information and power transfer (SWIPT) system where the base station not only conveys data and energy to two types of wireless vehicular receivers, such as one hybrid power-splitting vehicular receiver, and multiple energy vehicular receivers, but also prevents information from being intercepted by the potential eavesdroppers (idle energy vehicular receivers). Both the base station and the energy vehicular receivers are equipped with multiple antennas, whereas the information vehicular receiver is equipped with a single antenna. In particular, the imperfect channel state information (CSI) and the practical nonlinear energy harvesting (EH) model are taken into account. The non-convex optimization problem is formulated to maximize the minimum harvested energy power among the energy vehicular receivers satisfying the lowest harvested energy power threshold at the information vehicular receiver and secure vehicular communication requirements. In light of the intractability of the optimization problem, the semidefinite relaxation (SDR) technique and variable substitutions are applied, and the optimal solution is proven to be tight. A number of results demonstrate that the proposed robust secure beamforming scheme has better performance than other schemes.
机译:车用万物(V2X)由于具有实现交通安全和效率的潜力,因此被认为是有前途的技术。本文考虑了具有同时无线信息和功率传输(SWIPT)系统的V2X下行链路系统,其中基站不仅将数据和能量传输到两种类型的无线车载接收器,例如一个混合式功率分离车载接收器,还包括多个能量。车载接收器,但也可以防止信息被潜在的窃听者(空闲能量车载接收器)拦截。基站和能量车辆接收器均配备有多个天线,而信息车辆接收器均配备有单个天线。特别地,考虑了不完美的信道状态信息(CSI)和实际的非线性能量收集(EH)模型。制定非凸优化问题以最大化满足信息车辆接收器处的最低收获能量功率阈值的能量车辆接收器中的最小收获能量功率,并确保车辆通信需求。鉴于优化问题的棘手性,应用了半定松弛(SDR)技术和变量替换,并且证明了最优解是紧的。许多结果表明,所提出的鲁棒的安全波束成形方案具有比其他方案更好的性能。

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