Design of feedback laws for DC-DC converters using- modern control theory

M. Clique, A. Fossard
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引用次数: 4

Abstract

The use of a canonical state model for DC-DC converters keeping track of the physical variables allows naturally to use state feedback compensation (usually called "modern control theory"). The injection of the state variables in the compensator gives a schematic control structure which implicitely includes multiple loops. In the case of classical cells and neglecting the equivalent switching delay of the modulator, complete state feedback may be used ; it is then possible to determine completely the bandwith and damping of the controlled cell, adjusting correspondingly the gains of the state compensator. Generalisation of these techniques for more general cases can be achieved using specific algorithms. For steady state accuracy, it is interesting to add an integral term. It is proved that its destabilizing effect is negligible under certain conditions.
应用现代控制理论设计DC-DC变换器的反馈律
对DC-DC转换器使用规范状态模型来跟踪物理变量,自然允许使用状态反馈补偿(通常称为“现代控制理论”)。在补偿器中注入状态变量,给出了隐式包含多回路的控制结构示意图。在经典单元的情况下,忽略调制器的等效开关延迟,可以使用完全状态反馈;这样就可以完全确定被控单元的带宽和阻尼,并相应地调整状态补偿器的增益。可以使用特定的算法将这些技术推广到更一般的情况。对于稳态精度,添加一个积分项是很有趣的。证明了在一定条件下其失稳效应可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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