基于场景的DC-DC降压变换器控制设计方法

Aisha Qamar, Kunwar Faraz Ahmed Khan, A. Awan, Muwahida Liaquat
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引用次数: 1

摘要

基于从不确定集合中随机选择场景的思想,提出了一种概率鲁棒控制方案在DC-DC降压变换器中的应用。该技术涉及范围广泛的不确定系统的控制系统分析和设计问题的分析,如果在范式内对鲁棒性的要求施加概率意义,则可以有效地解决数值问题。变换器的输出电压会受到负载电流变化的影响。在变流器的动态模型中,负载的这种变化表现为一个线性的不确定参数,具有已知的范围。在存在负载变化的情况下,将输出电压保持在期望值被表述为LPV h∞优化问题。然而,我们没有采用传统的多面体方法覆盖整个不确定性集,而是采用基于场景的方法,通过明确地提取场景并提供场景数量的界限,从而保证了DC-DC降压变换器控制问题设计中先验的特定概率鲁棒性。这使得闭环系统的暂态性能在超调量和稳定时间方面有了微小的改善。数值仿真证明了上述方法,并与LPV多面体方法和线性PID控制进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scenario based approach for control design for DC-DC Buck Converter
The article presents the application of a probabilistic robust control scheme for DC-DC Buck Converter, on the basis of the idea of randomly selected scenarios from an uncertain set. This technique involves the analysis of a wide range of control system analysis and design problems for uncertain systems which are amenable to solve the numerical problems in efficient way if the requirements regarding robustness are imposed in probabilistic sense within the paradigm. The output voltage of the converter can be affected by changes in load current. This variation in load appears as a linear uncertain parameter, with a known range, in the dynamic model of the converter. Maintaining the output voltage to the desired value in the presence of load variations is formulated as an LPV H-infinity optimization problem. However, instead of covering the entire uncertainty set using the conventional polytopic approach, we use the scenario based approach to extract the scenarios by explicitly and providing the bound on the number of scenarios, resulting in a design to guarantee an a-priori particular probabilistic robustness in design of control problem for DC-DC Buck Converter. This results in a marginal improvement in transient performance, with regard to overshoot and settling time, of the closed loop system. Numerical simulations are performed to demonstrate the above, and a comparison with the LPV polytopic approach and linear PID control is presented.
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