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Harmonic modeling of vibration energy harvesting systems using extended impedance method

机译:延长阻抗法的振动能量收集系统谐波建模

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Vibration energy harvesting(VEH)systems convert the mechanical vibration energy in AC form into storable electrical energy in DC form.The mechanical structure,electromechanical transducer,and power electronics are three necessary parts for realizing the electromechanical energy transduction and rectification.The difficulty was found in modeling the electromechanical joint dynamics,in particular,when complex mechanical dynamics or sophisticated electrical switching transient are involved.Harmonic analysis is proven to be an efficient tool for modeling such a multiple-field-coupled power conversion system.In this paper,we develop a multiple harmonics analysis for the piezoelectric energy harvesting systems based on the extended impedance method(EIM).This method was used in the analysis of nonlinear power electronic circuits,such as resonant inverters and dc-dc converters.The theoretical results at steady state are compared with the simulation results from the commercialized circuit simulation software.The new modeling technique provides an efficient tool for the customized design and holistic optimization of the vibration energy harvesting systems.
机译:振动能量收集(VAL)系统将AC形式的机械振动能量转换为DC形式的可存储电能。机械结构,机电换能器和电力电子器件是实现机电能源转导和整流的三个必要件。发现难度在建模机电关节动力学时,特别是当涉及复杂的机械动态或复杂的电气开关瞬态时,呼声分析被证明是一种有效的工具,用于建模这种多场耦合电源转换系统。在本文中,我们开发基于扩展阻抗法(EIM)的压电能量收集系统的多谐波分析。本方法用于非线性电力电子电路的分析,谐振逆变器和DC-DC转换器。稳态的理论结果是与商业化电路仿真结果相比ation软件。新的建模技术为振动能量收集系统的定制设计和整体优化提供了一种有效的工具。

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