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Distributed Wireless Power Transfer With Energy Feedback

机译:具有能量反馈的分布式无线功率传输

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摘要

Energy beamforming (EB) is a key technique for achieving efficient radio-frequency transmission enabled wireless energy transfer (WET). By optimally designing the waveforms from multiple energy transmitters (ETs) over the wireless channels, they can be constructively combined at the energy receiver (ER) to achieve an EB gain that scales with the number of ETs. However, the optimal design of EB waveforms requires accurate channel state information (CSI) at the ETs, which is challenging to obtain practically, especially in a distributed system with ETs at separate locations. In this paper, we study practical and efficient channel training methods to achieve optimal EB in a distributed WET system. We propose two protocols with and without centralized coordination, respectively, where distributed ETs either sequentially or in parallel adapt their transmit phases based on a low-complexity energy feedback from the ER. The energy feedback only depends on the received power level at the ER, where each feedback indicates one particular transmit phase that results in the maximum harvested power over a set of previously used phases. Simulation results show that the two proposed training protocols converge very fast in practical WET systems even with a large number of distributed ETs, while the protocol with sequential ET phase adaptation is also analytically shown to converge to the optimal EB design with perfect CSI by increasing the training time. Numerical results are also provided to evaluate the performance of the proposed distributed EB and training designs as compared to other benchmark schemes.
机译:能量波束成形(EB)是实现有效的射频传输使能的无线能量传输(WET)的关键技术。通过优化设计无线通道上多个能量发射器(ET)的波形,可以在能量接收器(ER)上进行结构性组合,以实现与ET数量成比例的EB增益。但是,最佳的EB波形设计需要在ET处具有准确的通道状态信息(CSI),这在实际中很难获得,尤其是在带有ET在单独位置的分布式系统中。在本文中,我们研究了实用且有效的渠道培训方法,以在分布式WET系统中实现最佳EB。我们提出两种协议,分别具有和不具有集中式协调,其中分布式ET基于来自ER的低复杂度能量反馈,顺序或并行地调整其传输相位。能量反馈仅取决于ER的接收功率水平,其中每个反馈都指示一个特定的发射相位,该相位导致在一组先前使用的相位上获得最大的采集功率。仿真结果表明,即使在具有大量分布式ET的情况下,这两种拟议的训练协议在实际WET系统中的融合速度也非常快,同时通过分析证明,具有顺序ET相位自适应的协议可以通过增加CSI收敛到具有最佳CSI的最优EB设计。训练时间。与其他基准方案相比,还提供了数值结果来评估提议的分布式EB和培训设计的性能。

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