A W-Band Rectenna Using On-Chip CMOS Switching Rectifier and On-PCB Tapered Slot Antenna Achieving 25% Effective-Power-Conversion Efficiency for Wireless Power Transfer

Pingyang He, Jie Xu, Dixian Zhao
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引用次数: 5

Abstract

This paper presents a W-band rectenna unit, which incorporates an optimized CMOS switching rectifier and a print tapered slot antenna. Based on the analysis of the operation principle of the switching rectifier, this paper proposes an optimized structure of the switching rectifier and the body-diode effect (BDE) to improve reliability and power conversion efficiency (PCE). Besides, a high-gain W-band antipodal linearly tapered slot antenna (ALTSA) is implemented on PCB to improve the overall efficiency. The switching rectifier achieves a peak PCE of 45.8% at 94 GHz with improved reliability. The overall PCE of the rectenna unit up to 25% is achieved with 5.6 mW output dc power under 90 mW/cm2 incident power density. The proposed rectifier and rectenna achieve the highest PCE among recently reported W-band rectifiers and rectennas with different technologies
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采用片上CMOS开关整流器和pcb上锥形槽天线的w波段整流天线实现25%的有效功率转换效率,用于无线电力传输
本文提出了一种w波段整流单元,该单元集成了一个优化的CMOS开关整流器和一个打印锥形槽天线。在分析开关整流器工作原理的基础上,提出了开关整流器的优化结构和体二极管效应(BDE),以提高可靠性和功率转换效率(PCE)。此外,为了提高整体效率,还在PCB上实现了高增益w波段对端线性锥形槽天线(ALTSA)。开关整流器在94 GHz时的峰值PCE为45.8%,可靠性得到提高。在90mw /cm2入射功率密度下,5.6 mW直流输出功率可使整流单元的整体PCE达到25%。在最近报道的采用不同技术的w波段整流和整流天线中,所提出的整流和整流天线的PCE最高
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