应用于DC-DC降压变换器的离散时间控制器优化

G. Abbas, U. Farooq, J. Gu, M. Asad, M. Abid
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引用次数: 4

摘要

针对工作频率为1000khz的升压变换器,提出了一种基于离散根轨迹的离散时间控制器的优化设计方法。通过非线性最小二乘法实现优化。数字控制理论没有模拟控制理论丰富。设计师直接在z平面上定位极点和零点以呈现所需的性能是一项困难的任务。直接放置极点和零点也可能引入畸变。因此,基于数字控制器的直接数字设计方法可能无法提供令人满意的性能。通过优化技术,在其标称位置周围扰动极点和零点,以消除不必要的数字现象所带来的暴行。以ADC/DAC量化误差、延迟等形式出现的非线性对性能的影响也被强调。在MATLAB/Simulink环境下,研究了优化技术在降压变换器中的应用效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of discrete-time controller applied to DC-DC step-down converter
The paper describes the optimization of a discrete-time controller designed on the basis of discrete root locus for the boost converter operating at 1000 kHz. The optimization is accomplished through a nonlinear least squares method. The digital control theory is not as rich as the analog control theory. Locating poles and zeros directly in the z-plane by a designer to render the required performance is a difficult task to accomplish. Direct placement of poles and zeros may also introduce distortion as well. Consequently, direct digital design approach based digital controller may not offer satisfactory performance. The poles and zeros are disturbed around their nominal positions through the optimization technique to snub the atrocities introduced by the unwanted digital phenomena. Effect of nonlinearities in the form of ADC/DAC quantization error, delay, etc. on performance is also accentuated. The effectiveness of the application of the optimization technique to the buck converter is investigated using the MATLAB/Simulink environment.
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