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Small-Signal Analysis of Naturally-Sampled Single-Edge PWM Control Loops

机译:自然采样单边PWM控制环路的小信号分析

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This paper presents a simple method to analyze the behavior of feedback loops that contain a naturally-sampled single-edge pulse-width modulator. A small-signal model is derived by means of simple geometric arguments. It is shown how this small-signal model can be used to analyze the stability of the continuous-time pulse-width modulated feedback loop by using standard -domain techniques. The strategy relies on familiar concepts like transfer functions and small-signal gains and does not require any in-depth knowledge of nonlinear systems. A simple design process, where the continuous-time compensator is designed directly in the -domain, is developed and detailed design equations are derived for a PI current regulator. It is shown how the proposed strategy can accurately predict instability that cannot be explained by means of the well-known average model of the pulse-width modulator. The theoretical analysis is confirmed by means of detailed time-domain simulations. The mechanisms that lead to instability are discussed and an equation for the critical loop gain is derived.
机译:本文提出了一种简单的方法来分析包含自然采样的单边沿脉宽调制器的反馈环路的行为。小信号模型是通过简单的几何参数得出的。展示了如何使用标准域技术将该小信号模型用于分析连续时间脉宽调制反馈环路的稳定性。该策略依赖于熟悉的概念,例如传递函数和小信号增益,不需要对非线性系统有任何深入的了解。开发了一种简单的设计过程,其中直接在-域中设计连续时间补偿器,并为PI电流调节器导出了详细的设计方程式。它显示了所提出的策略如何能够准确地预测不稳定性,而这无法通过众所周知的脉宽调制器平均模型来解释。理论分析通过详细的时域仿真得到证实。讨论了导致不稳定的机制,并推导了临界环路增益的方程式。

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