Transputer implementation of fault tolerant distributed architecture for critical real-time application

Anupam Sinha, Atal Chaudhuri, Pratyusha Das · Real-Time Systems Symposium · 1991

The systems which perform mission-critical functions, as used in close-loop guidance and event sequencing for various real-time applications consider fault-tolerance as one of their desirable architectural attributes. Such systems are required to be extremely reliable and the work described is an optimistic approach to meet this reliability requirement through a communication architecture of distributed transputers. The fault diagnosis procedure is such that the detection of faulty nodes does not require any central observer and the architecture in true sense remains distributed. The reconfiguration of the system by the replacement of faulty nodes are automatically taken up by the spare nodes. The approach is implemented on eight nodes using multiple 32-bit transputers and the complete software is developed in OCCAM. >

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