Using 2.4 GHz load-side voltage standing waves to passively boost RF-DC voltage conversion in RF rectifier

IF 1.6 Q4 ENERGY & FUELS Wireless Power Transfer Pub Date : 2019-09-01 DOI:10.1017/wpt.2019.12
R. Vyas, Sichong Li, F. Ghannouchi
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Abstract

A novel, dual-band, voltage-multiplying (RF-DC) rectifier circuit with load-tuned stages resulting in a 50 Ω input-impedance and high RF-DC conversion in 2.4 and 5.8 GHz bands for wireless energy-harvesting is presented. Its novelty is in the use of optimal-length transmission lines on the load side of the 4 half-wave rectifying stages within the two-stage voltage multiplier topology. Doing so boosts the rectifier's output voltage due to an induced standing-wave peak at each diode's input, and gives the rectifier a 50 Ω input-impedance without an external-matching-network in the 2.4 GHz band. Comparisons with other rectifiers show the proposed design achieving a higher DC output and better immunity to changing output loads for similar input power levels and load conditions. The second novelty of this rectifier is a tuned secondary feed that connects the rectifier's input to its second stage to give dual-band performance in the 5.8 GHz band. By tuning this feed such that the second stage and first stage reactances cancel, return-loss resonance in the 5.8 GHz band is achieved in addition to 2.4 GHz. Simulations and measurements of the design show RF-DC sensitivity of −7.2 and −3.7 dBm for 1.8V DC output, and better than 10 dB return-loss, in 2.4 and 5.8 GHz bands without requiring an external-matching-network.
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利用2.4GHz负载侧电压驻波被动提升射频整流器中的射频-直流电压转换
提出了一种新颖的双频倍压(RF-DC)整流电路,其负载调谐级的输入阻抗为50 Ω,在2.4 GHz和5.8 GHz频段具有高RF-DC转换,用于无线能量收集。它的新颖之处在于在两级电压乘法器拓扑结构中,在负载侧的4个半波整流级上使用了最佳长度的传输线。这样做可以提高整流器的输出电压,因为每个二极管的输入处都有一个感应驻波峰值,并且在2.4 GHz频段内,在没有外部匹配网络的情况下,整流器的输入阻抗为50 Ω。与其他整流器的比较表明,在相似的输入功率水平和负载条件下,所提出的设计实现了更高的直流输出和更好的抗输出负载变化的能力。这个整流器的第二个新颖之处是一个可调谐的二次馈源,它将整流器的输入连接到它的第二级,从而在5.8 GHz频段提供双频性能。通过对馈电进行调谐,使第二级和第一级电抗相互抵消,除了2.4 GHz之外,还实现了5.8 GHz频段的回波损耗谐振。仿真和测量结果表明,该设计在1.8V直流输出下的RF-DC灵敏度为−7.2和−3.7 dBm,在2.4和5.8 GHz频段上的回波损耗小于10 dB,无需外部匹配网络。
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来源期刊
Wireless Power Transfer
Wireless Power Transfer ENERGY & FUELS-
CiteScore
2.50
自引率
0.00%
发文量
3
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