An optimized wind energy harvester for remote pollution monitoring

Leone Pasquato, Nicola Bonotto, Pietro Tosato, D. Brunelli
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引用次数: 2

Abstract

We present the design optimization of an energy harvesting device based on the aeroelastic flutter effect, developed for converting wind energy in electrical energy. Due to the aeroelastic mechanical principle, the energy harvester can be equipped with a system capable to follow the Maximum Power Point of the wind generator and then to sustain the energy demand of a sensor system used for pollution monitoring. The aeroelastic harvester consists of a tensioned ribbon coupled with an electromagnetic transducer and a power conditioning unit to guarantee the power supply for remote sensors deployed in hard-to-reach areas. This paper presents the characterization of the wind flutter generator and the design of a Maximum Power Point Tracking (MPPT) logic that controls the tension of the belt for the maximum energy extraction.
用于远程污染监测的优化风能采集器
提出了一种基于气动弹性颤振效应的能量收集装置的优化设计,该装置用于将风能转化为电能。由于气动弹性机械原理,能量采集器可以配备一个系统,该系统能够跟随风力发电机的最大功率点,然后维持用于污染监测的传感器系统的能量需求。气动弹性收割机由一个带有电磁换能器的张力带和一个电源调节单元组成,以保证在难以到达的区域部署的远程传感器的电源供应。本文介绍了风颤振发生器的特性和最大功率点跟踪(MPPT)逻辑的设计,该逻辑控制皮带的张力以获得最大的能量提取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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