RF-DC conversion efficiency improvement for microwave transmission with pulse modulation

IF 1.6 Q4 ENERGY & FUELS
Takashi Hirakawa, Ce Wang, N. Shinohara
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引用次数: 7

Abstract

Microwave power transfer (MPT) can solve certain types of problems. For example, Internet of Things requires a flexible configuration of sensor networks, which is hindered by wired-charging sensors. This problem can be overcome by MPT techniques. However, the transmission efficiency of MPT is lower than that of wired transmission. This study focuses on the operation of rectifiers having a pulse-modulated input signal. Although a pulse-modulated wave is effective for improving the RF-DC conversion efficiency, the output voltage waves of rectifiers have a high ripple content. Moreover, the harmonic balance method cannot be used to simulate the operation of a pulse-modulated rectifier. To reduce the ripple content, a smoothing capacitor should be connected in parallel to an output load. We investigated the influence of a smoothing capacitor, the general characteristics of rectifiers under pulse-modulated waves, and the effectiveness of using pulse-modulated waves for improving RF-DC conversion efficiency. In conclusion, we reveal a necessary condition of the smoothing capacitor for improvement, demonstrate the effectiveness of pulse modulation, and show that the optimum impedance with a pulse-modulated wave input is an inverse of duty ratio times as compared to that with continuous wave input.
提高脉冲调制微波传输的RF-DC转换效率
微波功率传输(MPT)可以解决某些类型的问题。例如,物联网需要灵活配置传感器网络,而有线充电传感器阻碍了这一配置。这个问题可以通过MPT技术来克服。然而,MPT的传输效率低于有线传输。本研究的重点是具有脉冲调制输入信号的整流器的操作。尽管脉冲调制波对于提高RF-DC转换效率是有效的,但是整流器的输出电压波具有高纹波含量。此外,谐波平衡法不能用于模拟脉冲调制整流器的运行。为了减少纹波含量,应该将平滑电容器并联到输出负载。我们研究了平滑电容器的影响,整流器在脉冲调制波下的一般特性,以及使用脉冲调制波提高RF-DC转换效率的有效性。总之,我们揭示了改善平滑电容器的必要条件,证明了脉冲调制的有效性,并表明与连续波输入相比,脉冲调制波输入的最佳阻抗是占空比倍数的倒数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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