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A Self-Powered High-Efficiency Rectifier With Automatic Resetting of Transducer Capacitance in Piezoelectric Energy Harvesting Systems

机译:自动复位压电能量收集系统中传感器电容的自供电高效整流器

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This paper presents a self-powered rectifier for piezoelectric energy harvesting applications, and the key idea of the proposed system is to reset the transducer capacitor at optimal instants to maximize the extracted power. The proposed rectifier consists of two switches and two active diodes. The switches discharge the transducer capacitor at optimal instants two times for every cycle. The active diodes are based on op-amps with a preset dc offset, which reduces the voltage drop and the leakage current and avoids instability. In addition, the controller for the proposed rectifier is simple to reduce the circuit complexity and the power dissipation. The proposed rectifier was designed and fabricated in 0.18-μm CMOS technology. Measured results indicate that it achieves power efficiency of 91.2%, and the amount of power extracted by the proposed rectifier is 3.5 times larger when compared with the conventional rectifiers. The proposed rectifier does not require any off chip components to enable a full chip integration, and the die area of the proposed circuit is 0.08 × 0.20 mm.
机译:本文介绍了一种用于压电能量收集应用的自供电整流器,该系统的关键思想是在最佳时刻复位换能器电容器,以使提取的功率最大化。建议的整流器由两个开关和两个有源二极管组成。开关在每个周期的最佳瞬间两次对换能器电容器放电。有源二极管基于具有预设dc偏移的运算放大器,从而减少了电压降和泄漏电流,并避免了不稳定因素。另外,所提出的整流器的控制器很容易降低电路复杂度和功耗。拟议的整流器采用0.18μmCMOS技术进行设计和制造。测量结果表明,它实现了91.2%的功率效率,与常规整流器相比,所提出的整流器提取的功率量大3.5倍。提出的整流器不需要任何片外组件即可实现完整的芯片集成,并且提出的电路的芯片面积为0.08×0.20 mm。

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