Smith predictor based sliding mode control for a class of unstable processes

 

Authors
Rojas Sulbar?n, Rub?n
Format
Article
Status
publishedVersion
Description

A strategy to regulate unstable processes using a modified Smith predictor based sliding mode controller (SP-SMC) is illustrated. The proposed scheme presents disturbance rejection and optimal control input usage with overall improved regulatory performances. The unstable process with time delay is first estimated using a simple measurement of limit cycle output obtained from a modified relay experiment. Then this paper extends a work on SPSMC for unstable processes, which leads to significant improvements in its regulatory capacities of reference inputs and disturbances. A new control law is incorporated in the discontinuous part of sliding mode control such that the overall performance improves significantly. The metaheuristic search algorithm with some modifications has been implemented successfully to satisfy the new control performance index. The robustness of the controller is also tested under the process uncertainty. Illustrative examples show the simplicity and superiority of the presented design method over previously published approaches.
Universidad de Cuenca
https://www.researchgate.net/publication/287391150_Smith_predictor_based_sliding_mode_control_for_a_class_of_unstable_processes

Publication Year
2015
Language
eng
Topic
SMITH PREDICTOR
BASED SLIDING MODE CONTROL
CLASS OF UNSTABLE PROCESSES
DISTURBANCE REJECTION
Repository
Repositorio SENESCYT
Get full text
http://repositorio.educacionsuperior.gob.ec/handle/28000/3030
Rights
openAccess
License
closedAccess