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A Novel Self-Powered Dynamic System Using a Quasi-Z-Source Inverter-Based Piezoelectric Vibration Energy Harvester

机译:一种新型自动动态系统,采用基于准Z源逆变器的压电振动能量收割机

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摘要

The use of quasi-Z-source inverters (qZSIs) for DC-DC power conversion applications has gained much recognition when dealing with grid-tied renewable energy resource integrations. This paper proposes a novel self-powered dynamic system (SPDS) involving a piezoelectric vibration energy harvester (PVEH) using qZSI to establish interoperability with a DC load rated at 16.15 mW. Based on uncertain output performances from a piezoelectric cantilever beam (CB), the qZSI-based PVEH serves as a dynamic voltage restoration unit that establishes load-following synchronisation. It uses a proportional-integral based boost controller (PI-based BC) to generate strategic ordering of shoot-through voltage amplification into pulse-width modulation (PWM) gating sequences. The SPDS was modelled using two software based on commercially available product specifications: (i) COMSOL Multiphysics to mechanically design and optimise a CB. (ii) PSCAD/EMTDC to electronically design and integrate the qZSI with the optimised CB, while functioning as a testbed to model the SPDS against arbitrary wind speed and structural vibration frequency data collected from an above-ground mass rapid transit (MRT) train station in Khatib, Singapore. The acquired simulation results have depicted desirable transient responses at respective sub-systems, procuring fast settling-time responses, negligible steady-state error, as well as high efficiencies of 94.07% and 91.64% for the CB and SPDS respectively.
机译:在处理网格连接的可再生能源资源集成时,使用准Z源逆变器(QZSIS)对DC-DC电源转换应用的使用情况非常识别。本文提出了一种新颖的自动动态系统(SPD),其涉及使用QZSI的压电振动能量收割机(PVEH),以建立互操作性,与16.15mW的DC负载。基于来自压电悬臂梁(CB)的不确定输出性能,基于QZSI的PVEH用作动态电压恢复单元,其建立负载跟随同步。它采用比例集成的基于增压控制器(基于PI的BC),以产生脉冲宽度电压放大的战略排序到脉冲宽度调制(PWM)门控序列。基于市售产品规格的两种软件使用两种软件进行建模:(i)COMSOL Multiphysics,用于机械设计和优化CB。 (ii)PSCAD / EMTDC以电子方式设计和集成QZSI与优化的CB,同时用作试验台,以根据从地上大容量快速运输(MRT)火车站收集的任意风速和结构振动频率数据来模拟SPD。在新加坡哈特布。所获取的模拟结果在各个子系统中描绘了所需的瞬态响应,分别采购快速沉降时间响应,可忽略不计的稳态误差,以及Cb和SPD的高效率为94.07%和91.64%。

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