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Stability Optimization Method Based on Virtual Resistor and Nonunity Voltage Feedback Loop for Cascaded DC–DC Converters

机译:基于虚拟电阻和单位电压反馈回路的级联式DC-DC变换器稳定性优化方法

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摘要

This paper proposes a stability optimization method based on virtual resistor and nonunity voltage feedback loop for cascaded dc–dc converters. Oscillating phenomenon or instability would occur occasionally with two or more closed-loop dc–dc converters in series. The virtual resistor and nonunity voltage feedback are used to modify the feedback loop instead of only a direct voltage feedback to improve stability and get rid of oscillating behavior. Based on the stability analysis of dc–dc converters with distributed parameters, several cases have been derived. After that, relative to different cases, two modified methods based on virtual resistor and nonunity voltage feedback loop are proposed to stabilize the overall system. With these methods, no extra power loss would be generated, and it is easy to embed them into any conventional control system. Experimental results verified the theoretical analysis and feasibility of the proposed control methods.
机译:本文针对级联的dc-dc转换器提出了一种基于虚拟电阻器和单位电压反馈环路的稳定性优化方法。两个或多个串联的闭环dc-dc转换器偶尔会发生振荡现象或不稳定。虚拟电阻器和电阻电压反馈用于修改反馈环路,而不仅仅是直接电压反馈,以提高稳定性并消除振荡行为。基于具有分布参数的dc-dc转换器的稳定性分析,得出了几种情况。在此之后,针对不同的情况,提出了两种基于虚拟电阻器和单位电压反馈环路的改进方法来稳定整个系统。使用这些方法,不会产生额外的功率损耗,并且很容易将它们嵌入任何常规控制系统中。实验结果验证了所提出控制方法的理论分析和可行性。

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