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Comparative analysis of ACC control loops of DC-DC converters by means of robust parametric control theory

机译:通过鲁棒参数控制理论对DC-DC转换器的ACC控制回路的比较分析

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Robust parametric control theory is a powerful tool for the research of linear control systems robustness against simultaneous changes in the parameters that define the plant and controller transfer functions. The purpose of this paper is to show how those techniques can be applied to the comparative performance study of conventional average current mode control (ACC) of DC-DC converters and an advanced three-controller robust ACC loop developed by the authors. In the analysis carried out in this work the sensitivity of both ACC loops with respect to simultaneous variations (or tolerances) of all the parameters defining the power stage is studied: line voltage, load and passive elements of the power stage (L, C, Rc etc.). theoretical Bode and Nyquist envelopes of both ACC control loops have been easily obtained by means of MATLAB/sup TM/ software.
机译:强大的参数控制理论是一种强大的工具,用于研究线性控制系统的鲁棒性,反对定义工厂和控制器传输功能的参数的同时变化的鲁棒性。本文的目的是展示这些技术如何应用​​于DC-DC转换器的传统平均电流模式控制(ACC)的比较性能研究以及由作者开发的先进的三个控制器鲁棒REC循环。在该工作中进行的分析中,研究了ACC环路关于定义功率级的所有参数的同时变化(或公差)的灵敏度:电源级的线电压,负载和无源元件(L,C, RC等)。通过MATLAB / SUP TM /软件可以轻松获得ACC控制回路的理论BODE和NYQUIST信封。

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