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Frequency Splitting and Transmission Characteristics of MCR-WPT System Considering Non-Linearities of Compensation Capacitors

机译:考虑补偿电容非线性的MCR-WPT系统的频率分裂和传输特性

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摘要

The frequency splitting phenomenon and transmission characteristics have been research hotspots in the field of magnetically coupled resonance wireless power transfer (MCR-WPT). In this paper, non-linear dynamics theory was innovatively introduced into the research, and non-linear coupled transmission dynamics modelling of the MCR-WPT system was established considering the non-linearities of the compensation capacitor. The mechanism of the frequency splitting phenomenon of the MCR-WPT system was revealed through systematic mathematical analyses based on the modelling. The analysis results showed that the system usually has dual natural frequencies which are low resonance frequency and high resonance frequency. Based on non-linear dynamics theory, the transmission characteristics of the system with different non-linear parameters were discussed comprehensively in relation to the modelling. The results of the numerical simulations and theoretical analyses showed that non-linear parameters can cause the jumping phenomena with the output responses, and the output responses in the vicinities of the lower resonance frequencies were extremely sensitive to changes in the coupling coefficient. According to analyses of the linear and non-linear systems, the energy transmissions performed in the vicinity of the high resonance frequency had a wider working frequency band and a better transmission stability under non-linear conditions.
机译:频率分裂现象和传输特性已经是磁耦合谐振无线电力传输(MCR-WPT)领域的研究热点。本文采用了非线性动力学理论,在考虑补偿电容的非线性的情况下建立了MCR-WPT系统的非线性耦合传动动力学建模。通过基于建模的系统数学分析揭示了MCR-WPT系统的频率分裂现象的机制。分析结果表明,该系统通常具有低谐振频率和高共振频率的双自然频率。基于非线性动力学理论,全面与建模有关具有不同非线性参数的系统的传输特性。数值模拟和理论分析的结果表明,非线性参数可以使跳跃现象与输出响应,较低谐振频率的附近的输出响应对耦合系数的变化非常敏感。根据线性和非线性系统的分析,在高谐振频率附近执行的能量传输在非线性条件下具有更宽的工作频带和更好的传输稳定性。

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