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储能系统技术 储能系统 多物理场耦合 ★ 5.0

失谐无线电力传输系统前端参数识别用于性能优化和负载电压调节

Front-End Parameter Identification for Performance Optimization and Load Voltage Regulation of Detuned Wireless Power Transfer Systems

语言:

中文摘要

无线电力传输技术在电池供电设备特别是电动汽车充电中加速应用。发射线圈与接收线圈间的可变耦合系数和可变等效负载电阻是影响系统运行的因素。由于参数变化、额定元件容差和制造不匹配,实践中无法完美匹配发射和接收电路的谐振频率。作者研究了基于非线性拟合的新系统识别方法以改善参数不确定性相关问题。采用频率控制方法调节负载电压增强运行性能。频率控制算法优化系统以实现零电压开关和低导通损耗保持运行效率。文章展示了非常经济简单的发射器电流幅值测量和参数变化检测方法,以在动态运行条件下实现新的最优工作点。

English Abstract

The technology of wireless power transfer has been in accelerated adoption for charging battery-powered devices, particularly in electric vehicles. The variable coupling coefficient between the transmitter and receiver coils and variable equivalent load resistance are the factors affecting the system’s operation. In addition, it is not feasible in practice to perfectly match the resonance frequencies of transmitter and receiver circuits due to parameter variation, rated component tolerances, and manufacturing mismatches. The authors investigated a new system identification method based on nonlinear fitting in order to improve issues related to parameter uncertainty. The operation is enhanced by employing a frequency control methodology to regulate the load voltage. The system is optimized for zero voltage switching and low conduction loss by the frequency control algorithm to keep the operation efficient. The paper shows a very cost-effective and simple measurement of the transmitter’s current magnitude and detection of parameter changes to achieve the new optimum operating point under the dynamic operating conditions. The effectiveness of the proposed method has been validated in the laboratory with experimental results from a prototype, confirming the theoretical analysis and design.
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SunView 深度解读

该失谐WPT系统参数识别研究对阳光电源无线充电产品优化有重要参考价值。基于非线性拟合的系统识别方法应对参数不确定性的能力与阳光新能源汽车OBC无线充电模块在实际应用中面临的耦合系数变化和负载波动场景高度契合。频率控制实现ZVS和低导通损耗的优化策略可直接应用于阳光无线充电系统的效率提升。经济简单的发射器电流测量方法为阳光iSolarCloud平台的无线充电智能监控提供了低成本传感方案。该研究对阳光电源提高无线充电系统鲁棒性和适应性有实用价值。