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Modeling and Simulation of Piezoelectric Energy Harvesting Device in Vehicle Suspension System

机译:车辆悬架系统压电能量收集装置的建模与仿真

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This manuscript introduces a novel design of harvesting electrical energy from a mechanically excited piezoelectric element (Lead Zirconate Titanate) by utilizing the suspension system of a motor vehicle. A comprehensive analysis and investigation are carried out by deploying both mechanical and electrical domain properties. The suspension system is designed in Solidworks, and the mathematical characterization and boundary properties are employed using the Finite Element Method. Consequently, necessary experimental simulations are performed in COMSOL Multiphysics concerning both PZT-4 and PZT-8 attributes which further demonstrate a comparative analysis. Following that, the electrical system is implemented in Matlab (Simulink) which consists of an AC-DC bridge rectifier followed by a Pi Filter, a switch-mode DC-DC Boost converter, and an electrochemical lead battery. The outcome of this electromechanical system presents the potential generation of 37.88 Volt (DC) and 40.97 Volt (DC) from PZT-4 and PZT-8 respectively, which can be applied in numerous low-voltage applications of daily life.
机译:该手稿通过利用机动车辆的悬架系统介绍从机械激发的压电元件(引线锆石)收获电能的新颖设计。通过部署机械和电气域属性进行全面的分析和调查。悬架系统设计在SolidWorks中,并且使用有限元方法采用数学表征和边界特性。因此,在COMSOL多发性中进行了必要的实验模拟,其涉及PZT-4和PZT-8属性,其进一步证明了比较分析。在此之后,电气系统在MATLAB(SIMULINK)中实现,该MATLAB(SIMULINK)由AC-DC桥式整流器组成,然后是PI滤波器,开关模式DC-DC升压转换器和电化学铅电池。该机电系统的结果分别呈现37.88伏(DC)和40.97伏(DC)的潜在产生,分别可以应用于日常生活的许多低压应用中。

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