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Dielectric Electroactive Polymer energy harvesting system forward path design for different vibration input patterns

机译:介电活性聚合物能量收集系统针对不同振动输入模式的前向路径设计

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摘要

Energy harvesting is a new emerging technology which is used to gathering ambient energy from surroundings. In this paper, we propose a new application idea that to harvest ambient vibration energy and store it into a Li-ion rechargeable battery by using Dielectric Electroactive Polymer (DEAP) generator. For proposed energy harvesting prototyping system, according to two different vibration input patterns in terms of mechanical vibration frequency and displacement, two topologies of system forward paths which include DEAP generator, voltage regulation circuit and DC-DC buck converter are designed. For the low frequency high displacement vibration input pattern, we develop a low frequency forward path by using Zener diode regulator. For the high frequency low displacement input pattern, we develop a high frequency forward path by using Butterworth low pass filter. Finally, PSPICE simulation results prove that both of the proposed circuits work properly to generate steady 4.2v DC voltage for energy harvesting.
机译:能量收集是一种新兴技术,用于从周围环境中收集环境能量。在本文中,我们提出了一个新的应用想法,即利用介电电活性聚合物(DEAP)发生器收集周围的振动能量并将其存储到锂离子可充电电池中。对于拟议的能量收集原型系统,根据机械振动频率和位移方面的两种不同的振动输入模式,设计了系统正向路径的两种拓扑,包括DEAP发生器,电压调节电路和DC-DC降压转换器。对于低频高位移振动输入模式,我们使用齐纳二极管稳压器来开发低频正向路径。对于高频低排量输入模式,我们通过使用巴特沃斯(Butterworth)低通滤波器来开发高频正向路径。最后,PSPICE仿真结果证明,所提出的两个电路都能正常工作,以产生稳定的4.2v DC电压用于能量收集。

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