DocumentCode
123924
Title
The Evaluation Platform for Testing Fault-Tolerance Methodologies in Electro-Mechanical Applications
Author
Podivinsky, Jakub ; Cekan, Ondrej ; Simkova, Marcela ; Kotasek, Zdenek
Author_Institution
Fac. of Inf. Technol., Brno Univ. of Technol., Brno, Czech Republic
fYear
2014
fDate
27-29 Aug. 2014
Firstpage
312
Lastpage
319
Abstract
The aim of this paper is to present a new platform for estimating the fault-tolerance quality of electro-mechanical applications based on FPGAs. We demonstrate one working example of such EM application that was evaluated using our platform: the mechanical robot and its electronic controller in an FPGA. Different building blocks of the electronic robot controller allow to model different effects of faults on the whole mission of the robot (searching a path in a maze). In the experiments, the mechanical robot is simulated in the simulation environment, where the effects of faults injected into its controller can be seen. In this way, it is possible to differentiate between the fault that causes the failure of the system and the fault that only decreases the performance. Further extensions of the platform focus on the interconnection of the platform with the functional verification environment working directly in FPGA that allows automation and speed-up of checking the correctness of the system after the injection of faults.
Keywords
controllers; fault tolerance; field programmable gate arrays; integrated circuit reliability; radiation hardening (electronics); FPGA; electromechanical applications; electronic robot controller; evaluation platform; fault tolerance methodologies; functional verification; mechanical robot; Circuit faults; Fault tolerance; Fault tolerant systems; Field programmable gate arrays; Robot kinematics; Testing; Electro-mechanical Systems; Fault Injection; Fault Tolerance; Single Event Upset;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital System Design (DSD), 2014 17th Euromicro Conference on
Conference_Location
Verona
Type
conf
DOI
10.1109/DSD.2014.57
Filename
6927259
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