DocumentCode
2565551
Title
Fault diagnosis using state information
Author
Boppana, Vamsi ; Hartanto, Ismed ; Fuchs, W. Kent
Author_Institution
Coordinated Sci. Lab., Illinois Univ., Urbana, IL, USA
fYear
1996
fDate
25-27 Jun 1996
Firstpage
96
Lastpage
103
Abstract
Repeated fault diagnosis on large integrated circuits may often be computationally prohibitive due to expensive fault simulation requirements. Fault dictionaries can help alleviate this problem, but they may be infeasible to store because of their large sizes, and more importantly, they typically provide only a black box view of the circuit and hence almost no diagnostic flexibility. The problem occurs because dictionaries usually only store primary output information. A new approach to fault diagnosis based on state information is presented. The selective storage of state information is shown to significantly improve the time for diagnostic fault simulation. We also describe a method to reduce the amount of information stored by choosing only a subset of the state space. This approach is shown to be ideally suited for partial scan circuits whose simple structure is exploited to reduce storage requirements. Experiments on the ISCAS 89 benchmark circuits are performed to demonstrate the efficiency of the state information based diagnosis technique
Keywords
circuit analysis computing; fault diagnosis; integrated circuit testing; ISCAS 89 benchmark circuits; diagnostic fault simulation; fault dictionaries; fault simulation requirements; large integrated circuits; partial scan circuits; primary output information; repeated fault diagnosis; state information based diagnosis technique; Circuit faults; Circuit simulation; Circuit testing; Combinational circuits; Computational modeling; Dictionaries; Fault diagnosis; Fault location; Flexible printed circuits; Sequential circuits;
fLanguage
English
Publisher
ieee
Conference_Titel
Fault Tolerant Computing, 1996., Proceedings of Annual Symposium on
Conference_Location
Sendai
ISSN
0731-3071
Print_ISBN
0-8186-7262-5
Type
conf
DOI
10.1109/FTCS.1996.534598
Filename
534598
Link To Document