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Modeling and Optimization of a Solar Energy Harvester System for Self Powered Wireless Sensor Networks

机译:自供电无线传感器网络的太阳能收集器系统的建模和优化

摘要

In this paper we propose a methodology for optimizing a solar harvester with maximum-power point tracking for self powered wireless sensors networks (WSN) nodes. We focus on maximizing the harvester’s efficiency in transferring energy from the solar panel to the energy storing device.A photovoltaic panel analytical model, based on a simplified parameter extraction procedure is adopted. This model predicts the instantaneous power collected by the panel helping the harvester design and optimization procedure. Moreover, a detailed modeling of the harvester is proposed to understand basic harvester behavior and optimize the circuit. Experimental results based on the presented design guidelines demonstrate the effectiveness of the adopted methodology. This design procedure helps in boosting efficiency, allowing to reach a maximum efficiency of 85% with discrete components. The application field of this circuit is not limited to self powered WSN nodes, but it can be easily extended also in embedded portable applications to extend battery life.
机译:在本文中,我们提出了一种用于自供电无线传感器网络(WSN)节点的具有最大功率点跟踪的太阳能收集器的优化方法。我们致力于最大程度地提高收割机将能量从太阳能电池板传输到能量存储设备的效率。采用了基于简化参数提取程序的光伏电池板分析模型。该模型可预测面板收集的瞬时功率,从而帮助收割机设计和优化程序。此外,提出了收割机的详细模型,以了解收割机的基本行为并优化电路。基于提出的设计指南的实验结果证明了所采用方法的有效性。此设计过程有助于提高效率,使分立元件的最高效率达到85%。该电路的应用领域不仅限于自供电的WSN节点,还可以在嵌入式便携式应用中轻松扩展,以延长电池寿命。

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