A Decoupled Modulation Strategy for Constant Voltage/Current Wireless Charging System Under High Coils Misalignment

IF 1.8 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Bing Cheng, Liangzong He
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Abstract

Output fluctuation and lower transmission efficiency under load and mutual inductance variation are hot concerned in the wireless charging system for power batteries. In this paper, a decoupled tracking strategy is proposed to realize constant voltage (CV) or current (CC) output and high transmission efficiency. The circuit model of series–series compensation network is built, and corresponding transmission characteristics can be derived. First, the load and mutual inductance value can be estimated by measuring the primary electrical information, including the inverter output voltage, current, and the phase error between them. Then load-independent voltage or current output characteristics under coils misalignment can be maintained by tracking the optimal switching frequency of inverter part. In addition, the value of output voltage or current can be adjusted flexibly for different operation occasions by the employment of pulse-width modulation. As a result, the load-independent output characteristics realization and output adjustment can be decoupled. Based on only the primary measuring information, the CV/CC output can be maintained via the proposed hybrid control strategy when the coils misalignment and load variation happen, increasing the robustness of whole wireless power transfer (WPT) system. Furthermore, the soft switching of all power switches in the inverter part can be realized to reduce the switching loss. Compared with previous research, the proposed wireless charging system has a higher power density and a simplified control strategy. Finally, an experimental platform with 60-V charging voltage and 3.6-A charging current is built to verify the feasibility of the proposed sys-tem and control method.

恒压/电流无线充电系统在高线圈不对准下的解耦调制策略
动力电池无线充电系统在负载和互感变化下的输出波动和传输效率降低是人们关注的热点问题。本文提出了一种解耦跟踪策略,以实现恒压或恒流输出和高传输效率。建立了串联补偿网络的电路模型,推导出相应的传输特性。首先,通过测量一次电气信息,包括逆变器输出电压、电流和它们之间的相位误差,可以估计出负载和互感值。通过跟踪逆变器部分的最优开关频率,可以保持线圈不对中情况下与负载无关的电压或电流输出特性。此外,通过采用脉宽调制,可以灵活地调整输出电压或电流的值,以适应不同的操作场合。从而实现了与负载无关的输出特性的实现和输出调节的解耦。该混合控制策略仅基于原始测量信息,就可以在线圈错位和负载变化时保持CV/CC输出,提高了整个无线电力传输系统的鲁棒性。此外,还可以实现逆变器部分所有功率开关的软开关,降低开关损耗。与以往的研究相比,所提出的无线充电系统具有更高的功率密度和简化的控制策略。最后搭建了充电电压为60v、充电电流为3.6 a的实验平台,验证了所提系统及控制方法的可行性。
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来源期刊
International Journal of Circuit Theory and Applications
International Journal of Circuit Theory and Applications 工程技术-工程:电子与电气
CiteScore
3.60
自引率
34.80%
发文量
277
审稿时长
4.5 months
期刊介绍: The scope of the Journal comprises all aspects of the theory and design of analog and digital circuits together with the application of the ideas and techniques of circuit theory in other fields of science and engineering. Examples of the areas covered include: Fundamental Circuit Theory together with its mathematical and computational aspects; Circuit modeling of devices; Synthesis and design of filters and active circuits; Neural networks; Nonlinear and chaotic circuits; Signal processing and VLSI; Distributed, switched and digital circuits; Power electronics; Solid state devices. Contributions to CAD and simulation are welcome.
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