Performance and robustness trade-off in disturbance observer design

E. Sariyildiz, K. Ohnishi
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引用次数: 24

Abstract

In the conventional design of disturbance observer (DOB), a first order low pass filter (LPF) is used to prevent algebraic loop and satisfy causality in the inner-loop. Although a conventional DOB has a good robustness, its performance is limited by the dynamic characteristics of a first order LPF. A DOB that uses a higher order LPF is called as a higher order disturbance observer (HODOB) and can be used to improve performance of a system. However, improving performance may cause robustness problems. Therefore, there is a trade-off between robustness and performance of a DOB based robust control system, and it is directly related to order of the LPF of DOB. This paper analyzes robustness and performance of robust control systems based on DOB. The relation between performance and robustness is derived analytically, and a new design tool, which improves robustness and performance, is proposed for HODOB. A general second order plant model is analyzed, and simulation results are given to show the validity of the proposed method.
扰动观测器设计中的性能与鲁棒性权衡
在传统的干扰观测器设计中,采用一阶低通滤波器(LPF)来防止代数环路和满足内环的因果性。虽然传统的DOB具有良好的鲁棒性,但其性能受到一阶LPF动态特性的限制。使用高阶LPF的DOB称为高阶扰动观测器(HODOB),可用于改善系统的性能。然而,提高性能可能会导致健壮性问题。因此,基于DOB的鲁棒控制系统的鲁棒性与性能之间存在着一种权衡,它与DOB的LPF的阶数直接相关。本文分析了基于DOB的鲁棒控制系统的鲁棒性和性能。分析了性能与鲁棒性之间的关系,提出了一种新的设计工具,提高了HODOB的鲁棒性和性能。对一般的二阶植物模型进行了分析,并给出了仿真结果,验证了该方法的有效性。
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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