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An energy efficient joint energy beamforming and time allocation with QoS guarantee via wireless energy transfer

机译:通过无线能量传输实现具有QoS保证的高效节能联合能量波束成形和时间分配

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Wireless energy transfer (WET) has been considered as a promising technology for providing mobile devices with untethered energy supply in wireless networks. In this paper, we assume one energy supplier (ES) and multiple WET powered terminals coexist. The ES wirelessly charge the terminals, and then terminals transfer their own information synchronously. The WET broadcast and wireless information transfer (WIT) take place in time duplexing manner. The WET powered terminals are assumed to have individual quality of service (QoS) requirements of information transfer. The joint design of downlink WET broadcast beamforming and time allocation between energy/information transfer is studied. An two step algorithm is proposed to jointly design both time duplexing factor and beamforming vector, in order to guarantee the terminals' QoS, meanwhile to minimize the WET power consumption by WET. To avoid iterative search, proposed algorithm first determine the time allocating factor by minimizing the lower bound of WET power. Then the optimal WET beamforming vector is obtained to guarantee terminals' QoS. Simulation results demonstrates proposed algorithm provides majority of the performance of global optimal solution while avoiding the computational burden of iterative optimization.
机译:无线能量传输(WET)被认为是一种有前途的技术,可以为移动设备提供无线网络中不受限制的能量供应。在本文中,我们假设一个能源供应商(ES)和多个由WET驱动的终端并存。 ES对终端进行无线充电,然后终端同步传输自己的信息。 WET广播和无线信息传输(WIT)以时间双工的方式进行。假定由WET供电的终端对信息传输具有单独的服务质量(QoS)要求。研究了下行WET广播波束形成与能量/信息传递之间时间分配的联合设计。提出了一种两步算法来共同设计时分双工因子和波束形成矢量,以保证终端的QoS,同时通过WET最小化WET的功耗。为了避免迭代搜索,提出的算法首先通过最小化WET功率的下界来确定时间分配因子。然后获得最优的WET波束成形矢量,以保证终端的QoS。仿真结果表明,该算法在避免迭代优化计算负担的同时,提供了全局最优解的大部分性能。

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