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Optimization of Geometry and Electrode Coverage of Trapezoidal Piezoelectric Energy Harvester for Specific Frequency

机译:特定频率梯形压电能量收割机几何和电极覆盖的优化

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In this paper, to get a high energy storage capacity, the geometry and electrode coverage of cantilevered trapezoidal piezoelectric energy harvester (PEH) with proof mass was designed and optimized for 50 Hz vibration environment, and it was verified by COMSOL simulations and experiments. The synchronous charge extraction circuit (SECE) is used to isolate the effect of the load on the recovered power in experiments. Under the same excitation of constant acceleration of 3 m/s2, trapezoidal and rectangular PEHs with the same volume are compared on the power generation capacity, the result shows that the output power of trapezoidal piezoelectric energy harvester is 31.6% higher than that of rectangular.
机译:在本文中,为了获得高储能容量,设计并优化了悬臂梯形压电能量收割机(PEH)的几何和电极覆盖,针对50 Hz振动环境设计并优化,并通过COMSOL模拟和实验验证。 同步电荷提取电路(SECE)用于隔离负载对实验中恢复功率的影响。 在相同的激励下,持续加速度为3米/秒 2 在发电能力上比较具有相同体积的梯形和矩形PEH,结果表明梯形压电能量收割机的输出功率高于矩形的31.6%。

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