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Study on an Optimal Control Method for Energy Injection Resonant AC/AC High Frequency Converters

机译:能量注入谐振AC / AC高频变换器的最优控制方法研究

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In energy injection resonant AC-AC converters, due to the low frequency effect of the AC input envelope and the low energy injection losses requirement, the constant and steady control of the high frequency AC output envelope is still a problem that has not been solved very well. With the aid of system modeling, this paper analyzes the mechanism of the envelope pit on the resonant AC current. The computing methods for the critical damping point, the falling time and the bottom value of the envelope pit are presented as well. Furthermore, this paper concludes the stability precondition of the system AC output. Accordingly, an optimal control method for the AC output envelope is put forward based on the envelope prediction model. This control method can predict system responses dynamically under different series of control decisions. In addition, this control method can select best series of control decisions to make the AC output envelope stable and constant. Simulation and experimental results for a contactless power transfer system verify the control method.
机译:在能量注入谐振AC-AC转换器中,由于AC输入包络的低频效应和能量注入损耗的低要求,高频AC输出包络的恒定和稳定控制仍然是一个尚未解决的问题好。借助于系统建模,本文分析了包络坑对交流谐振电流的作用机理。给出了临界阻尼点,下降时间和包络坑谷值的计算方法。此外,本文总结了系统交流输出的稳定性前提。因此,提出了一种基于包络预测模型的交流输出包络的最优控制方法。这种控制方法可以在不同系列的控制决策下动态预测系统响应。另外,这种控制方法可以选择最佳的控制决策序列,以使AC输出包络稳定且恒定。非接触式电力传输系统的仿真和实验结果验证了该控制方法。

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