DocumentCode :
3743856
Title :
Multiple stuck positions actuator faults: A model predictive based reconfigurable control scheme
Author :
Domenico Famularo;Giuseppe Franzè;Walter Lucia
Author_Institution :
DIMES - Università
fYear :
2015
Firstpage :
5091
Lastpage :
5096
Abstract :
This paper presents a Fault Tolerant Control scheme for constrained discrete time linear systems against stuck actuators and bounded disturbances. The results here proposed are a significant generalization of a similar algorithm which has been designed only to manage healthy/out-of-service in the actuator units. A first key feature is the capability to exploit existing methods based on polyhedral algebra and computational geometry in order to characterize the reconfiguration logic of the proposed fault tolerant architecture. This is achieved by defining a set of a finite number of piecewise affine systems capable to cover all of the admissible faulty stuck scenario. It is then proved that one-step sequences of controllable sets can be formally defined within a piecewise affine system paradigm under the key property that each region is a polygon.
Keywords :
"Actuators","Switches","Data structures","Boolean functions","Robustness","Bismuth"
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type :
conf
DOI :
10.1109/CDC.2015.7403016
Filename :
7403016
Link To Document :
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