A Practical Robust Direct Model Anti-windup Design

Wei Wu *

SCE, Carrier, UTC, East Syracuse, NY, 13057, USA.

*Author to whom correspondence should be addressed.


Abstract

This paper considers the synthesis of robust anti-windup compensators using direct models for stable multivariable linear time invariant uncertain plants. An internal model control antiwindup compensator as a special case of the direct model, preserves the robust stability of the unconstrained linear closed-loop system. The proposed direct model antiwindup aims to improve the performance of the constrained closed-loop system while guaranteeing robust stability. Robust stability and performance are achieved by shaping two closed-loop transfer functions based on a decoupled representation of the constrained closed-loop. Trade offs between robust stability and robust performance are provided by adjusting performance and stability weights. The direct model synthesis is cast into a H optimization or a μ synthesis problem, where the anti-windup objectives are robust stability and rapid recovery of the linear response. Two simulation examples, one single input single output(SISO), one multi-input multi-output(MIMO), demonstrate the design process and effectiveness of the proposed scheme.

Keywords: Direct model, anti-windup, MIMO, robust control design.


How to Cite

Wu, Wei. 2015. “A Practical Robust Direct Model Anti-Windup Design”. Journal of Scientific Research and Reports 8 (7):1-10. https://doi.org/10.9734/JSRR/2015/19655.

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