DocumentCode
1827411
Title
Development of a high Redundancy Actuation software demonstrator
Author
Davies, John ; Goodall, Roger M. ; Dixon, R. ; Steffen, Thomas
Author_Institution
Lancaster Environ. Centre, Lancaster Univ., Lancaster, UK
fYear
2010
fDate
7-10 Sept. 2010
Firstpage
1
Lastpage
6
Abstract
The High Redundancy Actuation (HRA) project investigates the use of a relatively high number of small actuation elements, assembled in series and parallel in order to form a single actuator which has intrinsic fault tolerance. Experimental hardware HRAs have been developed in order to validate and demonstrate the general principles of HRA and the efficacy of various passive and active fault tolerant control approaches. However, the number of actuation elements within these demonstrators is limited due to practical constraints. Hence, a software demonstrator that allows visual illustration of the operation and control of a wider range of HRA configurations and sizes has been developed in the Matlab/Simulink environment. Realtime simulation, animation, fault injection, health monitoring and control reconfiguration are achieved in the demonstrator through combination of the Simulink and Stateflow environment with Matlab´s GUI and plotting capabilities.
Keywords
actuators; computer animation; data visualisation; graphical user interfaces; real-time systems; redundancy; software fault tolerance; HRA configurations; HRA project; Matlab GUI; Matlab-Simulink environment; Simulink; Stateflow environment; active fault tolerant control approaches; animation; control reconfiguration; fault injection; hardware HRA; health monitoring; high redundancy actuation software demonstrator; intrinsic fault tolerance; plotting capabilities; real-time simulation; small actuation elements; visual illustration; Matlab/Simulink; Stateflow; fault diagnosis; fault tolerant control; simulation;
fLanguage
English
Publisher
iet
Conference_Titel
Control 2010, UKACC International Conference on
Conference_Location
Coventry
Electronic_ISBN
978-1-84600-038-6
Type
conf
DOI
10.1049/ic.2010.0288
Filename
6490746
Link To Document