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Development of a Nonlinear Piezoelectric Energy Harvester for Alternating Air Load

机译:用于改变空气负荷的非线性压电能量收集器的研制

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The demand for energy-harvesting technology is steadily growing in the field of self-powered wireless sensor systems for use in pneumatic systems. The purpose of this research was to study an energy harvester excited by alternating air load in a pneumatic system. The harvester was designed to consist of a power chamber and a compressed chamber, and to the bottom of the power chamber a piezoelectric patch as been affixed. The harvester is excited by the changing pressure, which can be adjusted through changing volume, and the alternating air pressure energy can be harvested through the deformation of the piezoelectric patch. A test system was built and a prototype device was tested under various experimental conditions. The test results show that the energy generation performance of the harvester can be influenced by varying the volume compression parameters, with the output voltage increasing when the flow increases. The maximal output voltage and power are 24.7 V and 1.06 mW, respectively. An effective power of 0.28 mW was measured across the 200 kΩ resistor at a pressure of 200 kPa and a cycle time of 2.5 s with a flow of 150 L/min.
机译:在用于气动系统的自供电无线传感器系统领域,对能量收集技术的需求正在稳步增长。这项研究的目的是研究由气动系统中交替的空气负荷激发的能量收集器。收割机的设计包括动力室和压缩室,并在动力室的底部安装了一块压电贴片。压力变化可以激发采集器,压力可以通过改变体积来调节,而交流压电能量可以通过压电贴片的变形来采集。建立了测试系统,并在各种实验条件下测试了原型设备。测试结果表明,通过改变体积压缩参数可以影响收割机的发电性能,当流量增加时,输出电压也会增加。最大输出电压和功率分别为24.7 V和1.06 mW。在200 kPa的压力下,以150 L / min的流量通过200 kPa电阻测量的有效功率为0.28 mW,循环时间为2.5 s。

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