Modeling and Control Strategy for Zero Voltage Switching Condition in Series-Series Compensated Inductive Power Transfer System

W. Wenbin, Xin Jianbo, Fan Ruixiang, L. Qiong, Meng Tianqi, Wang Ziyi, Z. Ao
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引用次数: 1

Abstract

The zero voltage switching (ZVS) condition should be maintained in the inductive power transfer (IPT) system supplied by inverter. It can be obtained when current lags the voltage of the inverter. In this paper, a modeling and control strategy is presented to maintain the ZVS condition of the IPT system. The equivalent impedance angle of the system can be regulated through adjusting the operation frequency. An equivalent circuit model of the IPT system supplied by a half-bridge inverter is firstly developed for analysis. Then the model is linearized around the operation point using small-signal method and is reduced with balance realization method. Based on this low-order model, the transfer function of this model is obtained and a PI controller is presented in discrete-time domain to stabilize the impedance angle. Finally, the simulation results verify the correctness of modeling and the effectiveness of the proposed controller.
串联补偿电感输电系统零电压切换工况建模与控制策略
逆变器供电的感应功率传输系统应保持零电压切换状态。当电流滞后于逆变器的电压时可以得到。本文提出了一种保持IPT系统ZVS状态的建模和控制策略。通过调节工作频率,可以调节系统的等效阻抗角。首先建立了由半桥逆变器供电的IPT系统的等效电路模型进行分析。然后用小信号法对模型在工作点周围进行线性化,并用平衡实现法对模型进行约简。在该低阶模型的基础上,给出了模型的传递函数,并在离散时间域设计了PI控制器来稳定阻抗角。最后,仿真结果验证了建模的正确性和所提控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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