A ZPE Based Frequency Control Approach to Realize Soft Switching in Contactless Power Transfer of Energy Storage System Applications

Bala Naga Lingaiah Ande, N. Tummuru
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Abstract

This paper proposes a zero phase angle error (ZPE) based frequency control approach to realize soft switching in inductive power transfer (IPT) charging of energy storage system applications. IPT is influenced by many parameters, such as the coupling coefficient between the transmitting and receiving coils and the load power requirement. This introduces new challenges, such as hard switching of the power converters in the system, which increases the power losses and degrades the power conversion efficiency. Furthermore, the switching devices need to be selected with higher ratings which increases the cost of the converters. To address these issues, an optimal frequency operation of the converter is proposed to achieve soft switching and transmit the maximum power to the load. The optimal frequency control is developed by minimizing the ZPE between the excitation voltage and current from the transmitting side. This makes the controller not require information on the IPT system's receiver side voltages and currents to achieve the aforementioned goals. Furthermore, the performance of the proposed control algorithm is validated using digital simulations. Finally, the IPT system is developed and tested for a maximum power of $1.7\text{kW}$ under open loop conditions, with experimental results presented in this paper.
基于ZPE的频率控制方法实现软开关在储能系统非接触输电中的应用
提出了一种基于零相位角误差(ZPE)的频率控制方法,实现感应功率传输(IPT)充电中储能系统软开关的应用。IPT受许多参数的影响,如发射线圈和接收线圈之间的耦合系数以及负载功率要求。这给系统带来了新的挑战,如功率转换器的硬开关,增加了功率损耗,降低了功率转换效率。此外,需要选择具有更高额定值的开关器件,这增加了转换器的成本。为了解决这些问题,提出了变换器的最佳频率操作,以实现软开关并向负载传输最大功率。最优的频率控制是通过最小化激发电压和发射侧电流之间的ZPE来实现的。这使得控制器不需要IPT系统的接收端电压和电流的信息来实现上述目标。此外,通过数字仿真验证了所提控制算法的性能。最后,开发了IPT系统,并在开环条件下进行了最大功率为$1.7\text{kW}$的测试,并给出了实验结果。
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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