Title :
A model for fault-tolerant networked control system using TTP/C communication
Author :
Patankar, Ravindra
Author_Institution :
Dept. of Mech. Eng. & Eng. Mech., Michigan Technol. Univ., Houghton, MI, USA
Abstract :
Safety-critical aerospace functions are generally required to have failure rates less than 10-9 per hour, and an architecture that is going to support several such functions is required to have failure rates less than 10-10 per hour. Though the requirement for an individual automobile may be more relaxed, similar requirements apply for automobiles in general because of their large number compared to aircraft. Consumer-grade electronics have failure rates orders of magnitude worse than this. Hence, redundancy to improve failure rates and fault tolerance to prevent faults from propagating, both are essential elements of a safety critical networked control system (NCS). TTP/C is a member of the TTP (time-triggered protocol) family that satisfies SAE Class C requirements for hard real-time fault-tolerant communication. A model is presented for a fault-tolerant NCS using TTP/C communication. Appropriate features of TTP/C are incorporated in the model.
Keywords :
control systems; fault tolerant computing; protocols; real-time systems; time division multiple access; TTP/C communication; consumer grade electronics; failure rates; fault tolerant networked control system; individual automobile; real-time fault tolerant communication; safety critical aerospace functions; time triggered protocol; Clocks; Communication networks; Communication system control; Delay; Fault tolerance; Fault tolerant systems; Networked control systems; Redundancy; Synchronization; Time division multiple access;
Conference_Titel :
American Control Conference, 2003. Proceedings of the 2003
Print_ISBN :
0-7803-7896-2
DOI :
10.1109/ACC.2003.1239070