Suany Vázquez-Valdés, R. Juárez-Aguirre, R. Woo-García, P. Argüelles-Lucho, A. Herrera-May, J. Estrada-López, F. López-Huerta
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引用次数: 1
摘要
可穿戴能量采集器在将人类运动能量转换为电能以为智能健康监测设备、纺织行业、智能手表和眼镜供电方面具有潜在应用。这些能量采集器需要最佳的整流器电路,以最大限度地提高其充电效率。在这项研究中,我们提出了一种用于可穿戴压电能量采集器的新型互补金属氧化物半导体(CMOS)可重构整流器的设计,该整流器可以提高其充电效率。设计的整流器基于标准0.18µm CMOS工艺技术,考虑到总硅面积为54.765µm x 86.355µm的几何图案。所提出的整流电路有两个传输门(TG),由四个整流晶体管组成,电荷为45kΩ,最小输入电压为500mV,最大电压为3.3V。整流器性能的数值模拟结果表明,该整流器的电压转换效率为99.4%,功率转换效率高达63.3%。该整流器可用于提高可穿戴式压电能量采集器的充电效率。
A Novel CMOS reconfigurable rectifier for wearable piezoelectric energy harvesters
Wearable energy harvesters have potential application in the conversion of human-motion energy into electrical energy to power smart health-monitoring devices, the textile industry, smartwatches, and glasses. These energy harvesters require optimal rectifier circuits that maximize their charging efficiencies. In this study, we present the design of a novel complementary metal-oxide semiconductor (CMOS) reconfigurable rectifier for wearable piezoelectric energy harvesters that can increase their charging efficiencies. The designed rectifier is based on standard 0.18 µm CMOS process technology considering a geometrical pattern with a total silicon area of 54.765 µm x 86.355 µm. The proposed rectifier circuit has two transmission gates (TG) that are composed of four rectifier transistors with a charge of 45 kΩ, a minimum input voltage of 500 mV and a maximum voltage of 3.3 V. Results of numerical simulations of the rectifier performance indicate a voltage conversion efficiency of 99.4% and a power conversion efficiency up to 63.3%. The proposed rectifier can be used to increase the charging efficiency of wearable piezoelectric energy harvesters.