DocumentCode
3412862
Title
Design Methodology of a Fault Aware Controller Using an Incipient Fault Diagonizer
Author
Roychoudhury, Joydeb ; Banrerjee, Tribeni P. ; Bandopadhaya, Anup K. ; Abraham, Ajith
Author_Institution
Embedded Syst. Lab., Central Mech. Eng. Res. Inst., Durgapur, India
Volume
3
fYear
2009
fDate
12-14 Aug. 2009
Firstpage
15
Lastpage
19
Abstract
The problem of failure diagnosis has received a considerable attention in the domain of reliability engineering, process control and computer science. The increasing stringent requirement of quality of a product needs considerable attention in the performance and reliability of the manufacturing system. In general, the feedback control algorithm for a process designed to handle small perturbation that may arise under normal operating condition but can not accommodate any abnormal behavior due to fault. Thus the automated maintenance or early detection of worn equipment is becoming a critical issue. This justifies the need of development of effective methodology in the area of fault aware controller. In this paper we proposed a novel algorithm and it have been tested and implemented for making highly reliable system like automated cricket ball stitching machine. Considering this need the present paper proposes the work on the development methodology of fault aware controller using embedded processor with reference to an early needle failure detection of a leather stitching machine.
Keywords
distributed control; embedded systems; failure analysis; fault diagnosis; leather industry; maintenance engineering; microcontrollers; process control; reliability; automated cricket ball stitching machine; automated maintenance; computer science; embedded processor; failure diagnosis; fault aware controller; feedback control algorithm; incipient fault diagonizer; leather stitching machine; manufacturing system; needle failure detection; process control; reliability engineering; worn equipment early detection; Algorithm design and analysis; Automatic control; Computer science; Design methodology; Feedback control; Maintenance; Manufacturing systems; Process control; Process design; Reliability engineering; automata; diagonizer; fault controller;
fLanguage
English
Publisher
ieee
Conference_Titel
Hybrid Intelligent Systems, 2009. HIS '09. Ninth International Conference on
Conference_Location
Shenyang
Print_ISBN
978-0-7695-3745-0
Type
conf
DOI
10.1109/HIS.2009.216
Filename
5254526
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