论文标题

使用数字无线电发射器的RF无线电源传输的波形和端到端效率

Waveforms and End-to-End Efficiency in RF Wireless Power Transfer Using Digital Radio Transmitter

论文作者

Ayir, Nachiket, Riihonen, Taneli, Allén, Markus, Fierro, Marcelo Fabián Trujillo

论文摘要

我们使用数字无线电发射器研究播放电量(RF)无线电源传输(WPT),用于替代模拟传输电路不切实际的应用。评估RF WPT系统生存能力的重要参数是其端到端效率。在这方面,我们提出了一个原型测试床,其中包括软件定义的无线电(SDR)发射器和低电阻载荷的能量收集接收器;采用SDR使我们的研究对同时无线信息和电力传输(SWIPT)有意义。我们分析了SDR上剪裁和非线性扩增的影响。我们的实验表明,当发射器处的直流输入功率是恒定的,高峰值功率比(PAPR)多次电源不适合RF WPT在扁平速度上,因为它们的平均辐射功率较低。结果表明,端到端的效率与波形的平均RF功率正相关,并且随着PAPR的增加而降低。因此,与多次数相比,数字调制(例如相移键合(PSK)和正交幅度模式(QAM))的端到端效率更高。此外,PSK和QAM信号的端到端效率是传输比特速率的不变性。对WPT端到端效率的深入分析表明,发射机效率低于接收器效率。此外,我们研究了反射表面对WPT端到端效率的影响,并通过评估其误差矢量幅度(EVM)的旋转来评估信息信号的传输质量。总体而言,端到端效率和EVM的实验观察结果表明,在采用具有固定DC输入功率的SDR发射器时,基带正交PSK信号最适合在PSK和QAM信号中大量旋转。

We study radio-frequency (RF) wireless power transfer (WPT) using a digital radio transmitter for applications where alternative analog transmit circuits are impractical. An important paramter for assessing the viability of an RF WPT system is its end-to-end efficiency. In this regard, we present a prototype test-bed comprising a software-defined radio (SDR) transmitter and an energy harvesting receiver with a low resistive load; employing an SDR makes our research meaningful for simultaneous wireless information and power transfer (SWIPT). We analyze the effect of clipping and non-linear amplification at the SDR on multisine waveforms. Our experiments suggest that when the DC input power at the transmitter is constant, high peak-to-average power ratio (PAPR) multisine are unsuitable for RF WPT over a flat-fading channel, due to their low average radiated power. The results indicate that the end-to-end efficiency is positively correlated to the average RF power of the waveform, and that it reduces with increasing PAPR. Consequently, digital modulations such as phase-shift keying (PSK) and quadrature amplitude modeulation (QAM) yield better end-to-end efficiency than multisines. Moreover, the end-to-end efficiency of PSK and QAM signals is invariant of the transmission bit rate. An in-depth analysis of the end-to-end efficiency of WPT reveals that the transmitter efficiency is lower than the receiver efficiency. Furthermore, we study the impact of a reflecting surface on the end-to-end efficiency of WPT, and assess the transmission quality of the information signals by evaluating their error vector magnitude (EVM) for SWIPT. Overall, the experimental observations of end-to-end efficiency and EVM suggest that, while employing an SDR transmitter with fixed DC input power, a baseband quadrature PSK signal is most suitable for SWIPT at large, among PSK and QAM signals.

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