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Optimization of Triboelectric Nanogenerator Charging Systems for Efficient Energy Harvesting and Storage

机译:摩擦电纳米发电机充电系统的优化,以实现高效的能量收集和存储

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Triboelectric nanogenerator (TENG) technology has emerged as a new mechanical energy harvesting technology with numerous advantages. This paper analyzes its charging behavior together with a load capacitor. Through numerical and analytical modeling, the charging performance of a TENG with a bridge rectifier under periodic external mechanical motion is completely analogous to that of a dc voltage source in series with an internal resistance. An optimum load capacitance that matches the TENGs impedance is observed for the maximum stored energy. This optimum load capacitance is theoretically detected to be linearly proportional to the charging cycle numbers and the inherent TENG capacitance. Experiments were also performed to further validate our theoretical anticipation and show the potential application of this paper in guiding real experimental designs.
机译:摩擦电纳米发电机(TENG)技术已经成为一种具有众多优势的新型机械能收集技术。本文与负载电容器一起分析其充电行为。通过数值和分析模型,带有桥式整流器的TENG在周期性外部机械运动下的充电性能完全类似于与内部电阻串联的直流电压源的充电性能。对于最大存储能量,可以观察到与TENGs阻抗匹配的最佳负载电容。理论上,该最佳负载电容被检测为与充电周期数和固有TENG电容成线性比例。还进行了实验以进一步验证我们的理论预期,并显示了本文在指导实际实验设计中的潜在应用。

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