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Analysis of an unstable phenomenon related to the different turn-on time between the subsystems in cascaded systems

机译:级联系统中与子系统之间不同的开启时间有关的不稳定现象的分析

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In this paper, we present an unstable phenomenon in cascaded systems that the source converter might become unstable after connected with the load converter though it can work stably individually. However, by staggering the switches' turn-on time between the source converter and load converter, it can become stable. Analysis in this paper shows that the essential reason for this phenomenon is that the model of PWM comparator will change with different turn-on time interval, which might significantly influence the loop gain of the source converter and reduce its stability margin, or even worse, make it unstable. The model of the source converter should be revised first before using the Middlebrook criterion to check the system's stability margin. A cascaded buck-buck converter is built to verify the correctness of the analysis.
机译:在本文中,我们提出了级联系统中的不稳定现象,即源转换器虽然可以单独稳定工作,但在与负载转换器连接后可能会变得不稳定。但是,通过错开源转换器和负载转换器之间的开关接通时间,它可以变得稳定。本文的分析表明,造成这种现象的根本原因是PWM比较器的模型会随着不同的开启时间间隔而变化,这可能会严重影响源转换器的环路增益并降低其稳定性裕度,甚至更糟。使它变得不稳定。在使用Middlebrook准则检查系统的稳定性裕度之前,应首先修改源转换器的模型。构建了一个级联的降压/降压转换器以验证分析的正确性。

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