Abstract:
In this paper, a novel technique to achieve robustness in sliding mode control for discrete-time systems by measuring only its output is presented. The proposed technique...Show MoreMetadata
Abstract:
In this paper, a novel technique to achieve robustness in sliding mode control for discrete-time systems by measuring only its output is presented. The proposed technique is based on the approximation of an arbitrary discrete-time function by using various of its previous steps. Using this approach, the system disturbance is approximated by a dynamical system and as result, the plant model is extended. Based on the extended model, a state observer is designed to estimate both the system state and the disturbance. Using the observer state, a discrete-time sliding mode controller is then designed to robustly stabilize the perturbed system. The simulation results show the effectiveness of the proposed technique.
Date of Conference: 09-11 July 2018
Date Added to IEEE Xplore: 13 September 2018
ISBN Information:
Electronic ISSN: 2158-3986
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Sliding Mode Control ,
- Sliding Mode ,
- Disturbance Estimation ,
- Discrete-time Sliding Mode Control ,
- System Dynamics ,
- Dynamical ,
- System State ,
- Previous Step ,
- Function Approximation ,
- System Disturbances ,
- Optimal Control ,
- Boundary Layer ,
- Control Input ,
- Closed-loop System ,
- System Output ,
- Observation Error ,
- Errors In Order ,
- Ultimate Boundedness ,
- Observer Gain Matrix
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Sliding Mode Control ,
- Sliding Mode ,
- Disturbance Estimation ,
- Discrete-time Sliding Mode Control ,
- System Dynamics ,
- Dynamical ,
- System State ,
- Previous Step ,
- Function Approximation ,
- System Disturbances ,
- Optimal Control ,
- Boundary Layer ,
- Control Input ,
- Closed-loop System ,
- System Output ,
- Observation Error ,
- Errors In Order ,
- Ultimate Boundedness ,
- Observer Gain Matrix