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Low-Power Design of a Self-powered Piezoelectric Energy Harvesting System With Maximum Power Point Tracking

机译:具有最大功率点跟踪功能的自供电压电能量采集系统的低功耗设计

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摘要

A low-power energy harvesting system targeting to harvest several milliwatts from vibration is presented in this paper. Several low-power design schemes to reduce power dissipation of the proposed system are described, and sources of power loss are analyzed to improve the power efficiency. A discontinuous conduction mode (DCM) flyback converter with the constant on-time modulation is adopted for our system. The DCM operation of a flyback converter is chosen as for maximum power point tracking (MPPT) to be implemented with a single current sensor. The constant on-time modulation lowers the clock frequency of the controller by more than an order of magnitude for our system, which reduces the dynamic power dissipation of the controller. MPPT, executed by a microcontroller unit (MCU), is achieved through dynamic resistive matching, and the MPPT is executed at intermittent time intervals due to a relatively slow change of the operating condition. When MPPT is not active, the MCU operates at a lower clock frequency to save power. Experimental results indicate that the proposed system harvests up to 8.4 mW power under 0.5-g base acceleration with four parallel piezoelectric cantilevers and achieves 72% power efficiency around the resonant frequency of 47 Hz.
机译:本文提出了一种旨在从振动中收集几毫瓦的低功率能量收集系统。描述了几种降低所提议系统功耗的低功耗设计方案,并分析了功耗的来源以提高电源效率。我们的系统采用具有恒定导通时间调制的不连续传导模式(DCM)反激式转换器。选择反激式转换器的DCM操作,以实现通过单个电流传感器实现的最大功率点跟踪(MPPT)。对于我们的系统,恒定的导通时间调制将控制器的时钟频率降低了一个数量级以上,从而降低了控制器的动态功耗。由微控制器单元(MCU)执行的MPPT是通过动态电阻匹配实现的,并且由于工作条件的变化相对较慢,因此MPPT在间歇的时间间隔内执行。当MPPT未激活时,MCU以较低的时钟频率运行以节省功耗。实验结果表明,所提出的系统在0.5 g的基本加速度下具有四个平行的压电悬臂梁,可收集高达8.4 mW的功率,并在47 Hz的谐振频率附近达到72%的功率效率。

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