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Signal and System Design for Wireless Power Transfer: Prototype, Experiment and Validation

机译:无线电源传输信号和系统设计:原型,实验和验证

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摘要

A new line of research on communications and signals design for Wireless Power Transfer (WPT) has recently emerged in the communication literature. Promising signal strategies to maximize the power transfer efficiency of WPT rely on (energy) beamforming, waveform, modulation and transmit diversity, and a combination thereof. To a great extent, the study of those strategies has so far been limited to theoretical performance analysis. In this paper, we study the real over-the-air performance of all the aforementioned signal strategies for WPT. To that end, we have designed, prototyped and experimented an innovative radiative WPT architecture based on Software-Defined Radio (SDR) that can operate in open-loop and closed-loop (with channel acquisition at the transmitter) modes. The prototype consists of three important blocks, namely the channel estimator, the signal generator, and the energy harvester. The experiments have been conducted in a variety of deployments, including frequency flat and frequency selective channels, under static and mobility conditions. Experiments highlight that a channel-adaptive WPT architecture based on joint beamforming and waveform design offers significant performance improvements in harvested DC power over conventional single-antenna/multi-antenna continuous wave systems. The experimental results fully validate the observations predicted from the theoretical signal designs and confirm the crucial and beneficial role played by the energy harvester nonlinearity.
机译:通信文献中最近出现了一种新的通信和信号设计的新研究系列,用于无线电力传输(WPT)。有希望的信号策略,以最大化WPT依赖于(能量)波束成形,波形,调制和发射分集的功率传递效率,以及其组合。在很大程度上,到目前为止对这些策略的研究仅限于理论绩效分析。在本文中,我们研究了WPT的所有上述信号策略的真正过空气性能。为此,我们已经设计了基于软件定义的无线电(SDR)的创新辐射WPT架构设计,原型,可以在开环和闭环(发射机处的通道采集)模式中。原型由三个重要的块组成,即信道估计器,信号发生器和能量收割机。在静态和移动条件下,该实验已经在各种部署中进行,包括频率平和频率选择性通道。实验强调,基于关节波束形成和波形设计的信道自适应WPT架构在传统的单天线/多天线连续波系统上提供了具有显着的性能改进。实验结果完全验证了从理论信号设计中预测的观察,并确认了能量收割机非线性所扮演的至关重要和有益作用。

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