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Tunable Capacitor Based on Polymer-Dispersed Liquid Crystal for Power Harvesting Microsystems

机译:基于聚合物分散液晶的可调谐电容器,用于功率收集微系统

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A tunable capacitor based on polymer-dispersed liquid-crystal (PDLC) technology is presented in this paper. Its application for robust power harvesting microsystems was investigated. The power harvesting device utilized a piezoelectric microcantilever excited by ambient random vibrations to convert mechanical energy into electric power. For improving the power harvesting efficiency, the PDLC tunable capacitor was used to adjust the resonance frequency of the piezoelectric microcantilever beam to match the frequency of the ambient vibrations in real time. The fabrication process and measurement results of the PDLC tunable capacitor are detailed. The measured tuning ratio of the PDLC tunable capacitor was 63% at 300-Hz excitation frequency when a 25-V driving voltage was applied. The dielectric and optical properties of the fabricated PDLC tunable capacitor have been examined thoroughly. Based on the results of the experiment, an equivalent lumped-element model of the PDLC tunable capacitor has been developed. The simulation results showed that the impedance of the developed model agreed well with that of the fabricated tunable capacitor. This model can be incorporated into the equivalent circuit of the integrated power harvesting system for efficiency optimization.
机译:本文提出了一种基于聚合物分散液晶(PDLC)技术的可调电容器。研究了其在鲁棒的功率收集微系统中的应用。功率收集装置利用了由环境随机振动激发的压电微悬臂梁将机械能转化为电能。为了提高功率收集效率,PDLC可调电容器用于调整压电微悬臂梁的共振频率,以实时匹配环境振动的频率。详细介绍了PDLC可调电容器的制造工艺和测量结果。当施加25V驱动电压时,在300Hz激励频率下测得的PDLC可调电容器的调谐率为63%。已彻底检查了所制造的PDLC可调电容器的介电和光学特性。根据实验结果,建立了PDLC可调电容器的等效集总模型。仿真结果表明,所开发模型的阻抗与所制造的可调电容器的阻抗吻合良好。可以将该模型合并到集成功率收集系统的等效电路中,以进行效率优化。

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