控制理论(社会学)
扰动(地质)
稳健性(进化)
导弹
线性系统
鲁棒控制
计算机科学
补偿(心理学)
衰减
控制系统
控制工程
工程类
数学
控制(管理)
人工智能
化学
光学
古生物学
航空航天工程
数学分析
物理
电气工程
基因
生物
生物化学
心理学
精神分析
作者
Jun Yang,Wen‐Hua Chen,Shengbo Eben Li
标识
DOI:10.1049/iet-cta.2010.0616
摘要
Robust control of non-linear systems with disturbances and uncertainties is addressed in this study using disturbance observer-based control (DOBC) technique. In this framework, the ‘disturbance’ is a generalised concept, which may include external disturbances, unmodelled dynamics and system parameter perturbations. The existing DOBC methods were only applicable for the case where disturbances and uncertainties satisfy so-called matching condition, that is, they enter the system in the same channel as the control inputs. By appropriately designing a disturbance compensation gain vector in the composite control law, a non-linear disturbance observer-based robust control method is proposed in this study to attenuate the mismatched disturbances and the influence of parameter variations from system output channels. The proposed method is applied to a missile system with non-linear dynamics in the presence of various uncertainties and external disturbances. Simulation shows that, compared with the widely used non-linear dynamic inversion control (NDIC) and NDIC plus integral action methods, the proposed method provides much better disturbance attenuation ability and stronger robustness against various parameter variations.
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