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A Charge-Depletion Study of an Electrostatic Generator With Adjustable Output Voltage

机译:输出电压可调的静电发生器的电荷耗竭研究

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Micro-scale generators are becoming more popular for harvesting energy to power bio-implantable devices and sensor networks. Most electrostatic generators (ESGs) use constant capacitors as storage or reservoir components in conjunction with a variable capacitor. The main issue with some existing ESG topologies is that these capacitors deplete and discharge over time. This paper studies a typical ESG and derives the charge depletion problem mathematically. Subsequently, a new ESG capable of circumventing this problem is proposed. Closed-form form ulas expressing the output voltage and generated power are derived and validated. The proposed ESG harvests 25% of the power that the mechanical energy source generates by actuating the variable capacitor when the maximum-to-minimum capacitance ratio of the variable capacitor is optimized. In the presented case study, the ESG generates 9.75 mW optimally when a variable capacitor with a maximum/minimum capacitance ratio of 39/9.75 mu F is used for energy harvesting from a 1-Hz knee joint movement of a walking person. The overall volume of the ESG is estimated to be 125 mm(3), and the variable capacitor is charged to 5 V at its maximum capacitance. A control mechanism and a self-starting circuit are presented for this ESG architecture, which allows it to generate any desired output voltage. This capability can be used to harvest the maximum available kinetic energy and compensate load variations.
机译:微型发电机在收集能量以驱动生物可植入设备和传感器网络方面正变得越来越流行。大多数静电发生器(ESG)都将恒定电容器与可变电容器一起用作存储或储存器组件。现有的一些ESG拓扑的主要问题是这些电容器会随时间耗尽并放电。本文研究了典型的ESG,并通过数学推导得出了电荷耗尽问题。随后,提出了一种能够解决此问题的新ESG。导出并验证了表示输出电压和所产生功率的闭式公式。当优化可变电容器的最大与最小电容比时,建议的ESG会通过驱动可变电容器来获取机械能源产生的功率的25%。在本案例研究中,当使用最大/最小电容比为39 / 9.75μF的可变电容器从步行者的1 Hz膝关节运动中收集能量时,ESG最佳产生9.75 mW。 ESG的总体积估计为125 mm(3),可变电容器以其最大电容充电至5V。提出了针对此ESG架构的控制机制和自启动电路,这使其可以生成任何所需的输出电压。此功能可用于收获最大可用动能并补偿负载变化。

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