首页 /研究 /Robust Sliding Mode Observer based Fault Estimation for Certain Class of Uncertain Nonlinear Systems
OTHER

Robust Sliding Mode Observer based Fault Estimation for Certain Class of Uncertain Nonlinear Systems

Zhang Jian, Akshya Swain, Sing Kiong Nguang

发表年份
2014
引用次数
38
访问权限
开放获取

摘要

Abstract This paper proposes a new scheme for estimating the actuator and sensor fault for Lipschitz nonlinear systems with unstructured uncertainties using the sliding mode observer (SMO) technique. Initially, a coordinate transformation is introduced to transform the original state vector into two parts such that the actuator faults only appear in the dynamics of the second state vector. The concept of equivalent output error injection is then employed to estimate the actuator fault. The effects of system uncertainties on the estimation errors of states and faults are minimized by integrating an uncertainty attenuation level into the observer. The sufficient conditions for the state estimation error to be bounded and satisfy a prescribed performance are derived and expressed as a linear matrix inequality (LMI) optimization problem. Furthermore, the proposed actuator fault estimation method is extended to sensor fault estimation. Finally, the effectiveness of the proposed scheme in estimating actuator and sensor faults has been illustrated considering an example of a single‐link flexible joint robot system.

关键词

Control theory (sociology)ActuatorObserver (physics)Nonlinear systemLinear matrix inequalityLipschitz continuityState vectorFault (geology)Fault detection and isolationTransformation (genetics)

相关论文

查看 OTHER 分类全部论文