双边LCC无线充电系统ZVS参数优化
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辽宁工程技术大学电气与控制工程学院葫芦岛125105

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TM724;TN98

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国家自然科学基金面上项目(52477191)、辽宁省教育厅科学研究经费重点攻关(LJ2020ZD004)项目资助


ZVS parameter optimization of double-sided LCC wireless charging system
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Faculty Of Electrical and Control Engineering, Liaoning Technical University, Huludao 125105,China

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    摘要:

    为提高双边LCC补偿无线充电系统的效率,提出一种通过优化补偿元件参数使逆变器在恒流、恒压双模式均实现零电压开关(zerovoltage switch,ZVS)的参数优化方法。首先,采用基尔霍夫定理对双边LCC补偿拓扑进行建模,分析系统在零相位角条件下实现与负载无关的恒流、恒压输出条件;其次,提出一种双模式参数协同优化策略:引入扰动系数,定量分析补偿元件在双模式下参数扰动对系统等效输入阻抗虚部的影响趋势,筛选在双模式均能使等效阻抗呈现弱感性的元件,依据此筛选结果,给出系统在恒流、恒压双模式均实现零电压开关的参数优化方法,从而实现双模式ZVS;最后,搭建双LCC补偿无线充电系统仿真模型与输入电压15 V的实验样机进行验证。结果表明,系统具有与负载无关的恒流、恒压输出能力,优化后系统逆变器在双模式均能实现零电压开关,系统最大效率可达91.31%,较传统单模式参数优化方法效率提升1%~1.1%,验证了所提参数优化方法的有效性。

    Abstract:

    In order to improve the efficiency of the double-sided LCC compensation wireless charging system, a parameter optimization method is proposed to realize the zero-voltage switching of the inverter in both constant current and constant voltage modes by optimizing the parameters of the compensation element. Firstly, the double-sided LCC compensation topology is modeled by Kirchhoff’s theorem, and the constant current and constant voltage output conditions independent of the load are analyzed under the condition of zero phase angle. Secondly, a dual-mode parameter collaborative optimization strategy is proposed: the disturbance coefficient is introduced to quantitatively analyze the influence trend of the parameter disturbance of the compensation element on the imaginary part of the equivalent input impedance of the system in the dual-mode, and the components that can make the equivalent impedance show weak inductance in the dual-mode are screened. Based on this screening result, the parameter optimization method of the system to achieve zero voltage switching in both constant current and constant voltage dual modes is given, so as to realize dual-mode ZVS. Finally, a simulation model of the double-sided LCC compensation wireless charging system and an experimental prototype with an input voltage of 15 V are built for verification. The results show that the system has a constant current and constant voltage output capability independent of the load. The optimized system inverter can achieve zero voltage switching in both modes. The maximum efficiency of the system can reach 91.31%, which is 1% ~ 1.1% higher than the efficiency of the traditional single-mode parameter optimization method, which verifies the effectiveness of the proposed parameter optimization method.

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刘春喜,常洪赫,孙小鹏,李磊.双边LCC无线充电系统ZVS参数优化[J].电子测量与仪器学报,2025,39(10):142-152

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  • 在线发布日期: 2026-01-05
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