English

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

Signal Processing 2020-12-03 v1 Systems and Control Systems and Control

Abstract

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.

Keywords

Cite

@article{arxiv.2012.01108,
  title  = {Waveforms and End-to-End Efficiency in RF Wireless Power Transfer Using Digital Radio Transmitter},
  author = {Nachiket Ayir and Taneli Riihonen and Markus Allén and Marcelo Fabián Trujillo Fierro},
  journal= {arXiv preprint arXiv:2012.01108},
  year   = {2020}
}

Comments

Accepted for publication in IEEE Transactions on Microwave Theory and Techniques

R2 v1 2026-06-23T20:40:03.375Z