Title :
An Approach to the Development of Inference Engine for Distributed System for Fault Diagnosis
Author :
Prasad, Vinod B.
Author_Institution :
Bradley Univ., Peoria, IL, USA
Abstract :
The reliable and fault tolerant computers are key to the success to aerospace, and communication industries. Designing a reliable digital system, and detecting and repairing the faults are challenging tasks in order for the digital system to operate without failures for a given period of time. The paper presents a new and systematic software engineering approach of performing fault diagnosis parallel and distributed computing. The purpose of the paper would be to demonstrate a method to build a fault diagnosis for a parallel and distributed computing. The paper chooses a model posed a tremendous challenge to the user for fault analysis. The model is the classic PMC model that happens to be a parallel and distributed computing. The paper would also show a method for building an optimal inference engine by obtaining sub graphs that also preserve the necessary and sufficient conditions of the model. Coin words: Parallel and Distributed Computing, Artificial Intelligence.
Keywords :
fault diagnosis; graph theory; inference mechanisms; parallel processing; software fault tolerance; aerospace industries; communication industries; digital system; distributed computing; distributed system; fault analysis; fault diagnosis; fault tolerant computers; optimal inference engine; parallel computing; software engineering approach; sub graphs; Aerospace engineering; Aerospace industry; Communication industry; Digital systems; Distributed computing; Engines; Fault detection; Fault diagnosis; Fault tolerance; Software engineering; Fault Diagnosis; Inference Engine;
Conference_Titel :
Software Engineering, Artificial Intelligences, Networking and Parallel/Distributed Computing, 2009. SNPD '09. 10th ACIS International Conference on
Conference_Location :
Daegu
Print_ISBN :
978-0-7695-3642-2
DOI :
10.1109/SNPD.2009.53