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一种用于环境射频能量收集的双频段宽输入范围自适应CMOS射频-直流转换器。

A Dual-Band Wide-Input-Range Adaptive CMOS RF-DC Converter for Ambient RF Energy Harvesting.

作者信息

Heo Bo-Ram, Kwon Ickjin

机构信息

Department of Electrical and Computer Engineering, College of Information Technology, Ajou University, Suwon 16499, Korea.

出版信息

Sensors (Basel). 2021 Nov 10;21(22):7483. doi: 10.3390/s21227483.

Abstract

In this paper, a dual-band wide-input-range adaptive radio frequency-to-direct current (RF-DC) converter operating in the 0.9 GHz and 2.4 GHz bands is proposed for ambient RF energy harvesting. The proposed dual-band RF-DC converter adopts a dual-band impedance-matching network to harvest RF energy from multiple frequency bands. To solve the problem consisting in the great degradation of the power conversion efficiency (PCE) of a multi-band rectifier according to the RF input power range because the available RF input power range is different according to the frequency band, the proposed dual-band RF rectifier adopts an adaptive configuration that changes the operation mode so that the number of stages is optimized. Since the optimum peak PCE can be obtained according to the RF input power, the PCE can be increased over a wide RF input power range of multiple bands. When dual-band RF input powers of 0.9 GHz and 2.4 GHz were applied, a peak PCE of 67.1% at an input power of -12 dBm and a peak PCE of 62.9% at an input power of -19 dBm were achieved. The input sensitivity to obtain an output voltage of 1 V was -17 dBm, and the RF input power range with a PCE greater than 20% was 21 dB. The proposed design achieved the highest peak PCE and the widest RF input power range compared with previously reported CMOS multi-band rectifiers.

摘要

本文提出了一种用于环境射频能量收集的双频段宽输入范围自适应射频到直流(RF-DC)转换器,其工作在0.9 GHz和2.4 GHz频段。所提出的双频段RF-DC转换器采用双频段阻抗匹配网络,以从多个频段收集射频能量。为了解决多频段整流器的功率转换效率(PCE)会根据射频输入功率范围大幅下降的问题(因为可用射频输入功率范围根据频段不同而不同),所提出的双频段射频整流器采用了一种自适应配置,该配置会改变操作模式,从而优化级数。由于可以根据射频输入功率获得最佳峰值PCE,因此在多个频段的宽射频输入功率范围内,PCE都可以提高。当施加0.9 GHz和2.4 GHz的双频段射频输入功率时,在输入功率为-12 dBm时实现了67.1%的峰值PCE,在输入功率为-19 dBm时实现了62.9%的峰值PCE。获得1 V输出电压的输入灵敏度为-17 dBm,PCE大于20%的射频输入功率范围为21 dB。与先前报道的CMOS多频段整流器相比,所提出的设计实现了最高的峰值PCE和最宽的射频输入功率范围。

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