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Sufficient Condition-Based Stability Analysis of a Power Converter Applied Switching Transient Waveform Modification Using Kharitonov’s Theorem

机译:基于Kharitonov定理的功率变换器基于开关瞬态波形修改的充分基于条件的稳定性分析

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The rapid switching action of power metal-oxide-semiconductor field-effect transistor (MOSFET) causes high-level electromagnetic interference (EMI) in power converters. The switching transient waveform modification method realized by closed-loop gate drive has been recognized as an effective high-frequency EMI reduction approach. However, feedback control of power MOSFET in the saturation region would introduce stability problems. This paper presents a sufficient condition-based stability analysis of all the operating points during turn-off using Kharitonov’s theorem. Firstly, a small-signal MOSFET model during turn-off was used to derive the closed-loop system transfer function. The nonlinear capacitances and the rest constant parameters of the small-signal model were determined based on the device characteristics and the expected outcome of the drain-source voltage. Then we split the turn-off switching transient into several subintervals, during which the system characteristic equation became an interval polynomial due to the nonlinear capacitances. Finally, Kharitonov’s theorem was applied in each subinterval to evaluate the stability, thereby achieving the overall system stability analysis during turn-off. Experiments were conducted to investigate the system’s stability and the results confirmed the validity of the proposed analysis. This work presents an implementable design guideline for the applied switching transient waveform modification of power converters via closed-loop gate drive.
机译:功率金属氧化物半导体场效应晶体管(MOSFET)的快速开关动作会在功率转换器中引起高水平的电磁干扰(EMI)。通过闭环栅极驱动实现的开关瞬态波形修改方法已被认为是一种有效的高频EMI降低方法。但是,饱和区中的功率MOSFET的反馈控制会带来稳定性问题。本文使用Kharitonov定理对关闭期间的所有工作点进行了充分的基于条件的稳定性分析。首先,使用了关断期间的小信号MOSFET模型来得出闭环系统传递函数。基于器件特性和漏极-源极电压的预期结果,确定了小信号模型的非线性电容和其余常数参数。然后,我们将关断开关瞬变分为几个子间隔,在此期间,由于非线性电容,系统特性方程变为间隔多项式。最后,将Kharitonov定理应用于每个子区间以评估稳定性,从而在关闭期间实现整体系统稳定性分析。进行了实验以调查系统的稳定性,结果证实了所提出分析的有效性。这项工作为通过闭环栅极驱动的功率转换器的开关瞬态波形修改提供了可行的设计指南。

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