首页> 外文期刊>Mechanical systems and signal processing >Modeling, analysis and comparison of four charging interface circuits for piezoelectric energy harvesting
【24h】

Modeling, analysis and comparison of four charging interface circuits for piezoelectric energy harvesting

机译:压电能量收集四个充电接口电路的建模,分析与比较

获取原文
获取原文并翻译 | 示例
           

摘要

Four interface circuits have been widely studied in piezoelectric energy harvesting over the last two decades, namely, the standard energy harvesting (SEH) circuit, synchronized charge extraction (SCE) circuit, parallel synchronized switch harvesting on inductor (P-SSHI) circuit and series synchronized switch harvesting on inductor (S-SSHI) circuit. However, the abilities of these four circuits to charge storage capacitors are yet to be understood. This work focuses on the modeling and comparison of the charging process of these four circuits. First, the solutions of the voltage variations on the storage capacitors during charging process in each half-cycle are derived. Subsequently, the equivalent circuit model of the harvester interfaced with SEH and self-powered SCE, P-SSHI and S-SSHI circuits are implemented and simulated to validate the theoretical results. In the evaluation of the four circuits, different electromechanical coupling conditions of the PEH have been considered. The influence of the storage capacitance on charging performance are investigated. It is shown that for the SEH, P-SSHI or S-SSHI circuit, an optimal storage capacitor exists to maximize the accumulated energy and it varies with coupling condition. For a PEH with weak coupling, the P-SSHI circuits is suitable for energy charging. For the medium and strong coupling conditions, the SEH and S-SSHI circuits are more efficient as compared to the P-SSHI and SCE circuits.
机译:在过去二十年中,四个接口电路已广泛研究了压电能量收集,即标准能量收集(SEH)电路,同步电荷提取(SCE)电路,在电感器(P-SSHI)电路和系列上的并行同步开关采集电感器(S-SSHI)电路上的同步开关收获。然而,这四个电路对电荷电容器的能力尚未理解。这项工作侧重于这四电路充电过程的建模和比较。首先,推导出在每个半周期中的充电过程中存储电容器上的电压变化的解。随后,实现并模拟了与SEH和自供电SCE,P-SSHI和S-SSHI电路接口的收割机的等效电路模型,以验证理论结果。在四电路的评估中,已经考虑了PEH的不同机电耦合条件。研究了存储电容对充电性能的影响。结果表明,对于SEH,P-SSHI或S-SSHI电路,存在最佳存储电容来最大化累积的能量,并且随着耦合条件而变化。对于具有弱耦合的PEH,P-SSHI电路适用于能量充电。对于介质和强耦合条件,与P-SSHI和SSHI电路相比,SEH和S-SSHI电路更有效。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号