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Robust nonlinear adaptive control of multiphase synchronous buck power converters

机译:多相同步降压功率变换器的鲁棒非线性自适应控制

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The problem of controlling multiphase synchronous buck power converters is considered. The aims are to regulate the output voltage of the converter and to ensure adequate current sharing between its different channels. Using the backstepping technique, an adaptive controller is designed based on a large-signal bilinear model of the whole multi-channel converter. A parameter projection is used to ensure that the obtained adaptive controller is robust to parasitic resistances. The controller is formally shown to meet the objectives of closed-loop asymptotic stability, output reference tracking, and equal load sharing. The attraction region depends on the uncertain parasitic impedance size, with the attraction region being larger for smaller parasitic impedances. In the ideal case of no parasitic impedances, the closed-loop asymptotic stability is global. These theoretical results are confirmed by simulation.
机译:考虑了控制多相同步降压功率转换器的问题。目的是调节转换器的输出电压,并确保其不同通道之间有足够的电流共享。使用反步技术,基于整个多通道转换器的大信号双线性模型设计了一种自适应控制器。参数投影用于确保获得的自适应控制器对于寄生电阻具有鲁棒性。正式显示了该控制器可以满足闭环渐进稳定性,输出参考跟踪和均分负载的目标。吸引区域取决于不确定的寄生阻抗大小,对于较小的寄生阻抗,吸引区域更大。在没有寄生阻抗的理想情况下,闭环渐近稳定性是全局的。这些理论结果通过仿真得到了证实。

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