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On Structural Effects and Energy Conversion Efficiency of Power Harvesting

机译:电能收集的结构效应和能量转换效率

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摘要

The concept of power harvesting works towards developing self-powered devices that do not require replaceable power supplies. One important parameter defining the performance of a piezoelectric power harvesting system is the efficiency of the system. However, an accepted definition of the energy harvesting efficiency does not currently exist. This article will develop a new definition for the efficiency of an energy harvesting system which rather than being defined through energy conservation as the ratio of the energy fed into the system to maintain the steady state to the output power, we consider the ratio of the strain energy over each cycle to the power output. This new definition is analogous to the material loss factor. Simulations will be performed to demonstrate the validity of the efficiency and will show that the maximum efficiency occurs at the matched impedance; however, for materials with high electromechanical coupling the maximum power is generated at the near open and closed-circuit resonances with a lower efficiency.
机译:功率收集的概念致力于开发不需要可更换电源的自供电设备。定义压电功率收集系统性能的一个重要参数是系统的效率。但是,目前尚没有公认的能量收集效率定义。本文将为能量收集系统的效率提出新的定义,而不是通过节能来定义,因为能量输入系统以保持稳态与输出功率之比,而是考虑应变的比率每个周期的能量输出功率。这个新定义类似于材料损失因子。将进行仿真以证明效率的有效性,并且将显示最大效率出现在匹配的阻抗上。但是,对于机电耦合度高的材料,在接近开路和闭路谐振时会以较低的效率产生最大功率。

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