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首页> 外文期刊>IEEE Transactions on Industrial Electronics >The Integrated Self Priming Circuit: An Autonomous Electrostatic Energy Harvester With Voltage Boosting
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The Integrated Self Priming Circuit: An Autonomous Electrostatic Energy Harvester With Voltage Boosting

机译:集成自动启动电路:具有电压升压的自主静电能量收割机

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摘要

This article presents a method for modifying an electrostatic harvester (EH) to allow autonomous management of its charge. The method involves segmenting a naturally antagonistic (out-of-phase) EH and connecting it with diodes to form an integrated self priming circuit (I-SPC). A model for the I-SPC is presented and shown that an exponential increase in voltage on the EH will occur over 10's of harvesting cycles. Furthermore, the model finds that increasing the segmentation of the EH allows harvesting at lower capacitance change ratios. The model is validated through simulation and experiment. The experiment is performed using a dielectric elastomer EH which consists of eight segments. During experimentation, it is confirmed that an I-SPC charged to 5 V is capable of reaching a voltage of approximately 2600 V after 40 capacitance change cycles. This fast voltage gain highlights the possibilities of self-managed EHs which harvest renewable kinetic energy autonomously to power wireless sensor networks (WSNs). The lack of maintenance associated with these systems will allow cheap WSN powered by renewable energy sources to be implemented in industrial applications.
机译:本文介绍了一种修改静电收割机(EH)以允许自动管理其充电的方法。该方法涉及将天然拮抗(异相)eH分割并与二极管连接以形成集成自引导电路(I-SPC)。提出了一种用于I-SPC的模型,并表明EH上的电压上的指数增加将发生在10次收获周期上。此外,该模型发现,增加EH的分割允许以较低电容变化比收获。该模型通过仿真和实验验证。使用介电弹性体EH进行实验,该介质弹性体EH由八个区段组成。在实验期间,确认电荷为5V的I-SPC能够在40个电容变化循环之后达到约2600V的电压。这种快速电压增益突出了自动管理EHS的可能性,该ehs自主地收获可再生动能能量,从无线传感器网络(WSN)。与这些系统相关的维护缺乏维护将允许在工业应用中实现可再生能源的便宜WSN。

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