Designing fault-tolerant real-time computer systems with diversified bus architecture for nuclear power plants

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Abstract

Fault-tolerant real-time computer (FT-RTC) systems are widely used to perform safe operation of nuclear power plants (NPP) and safe shutdown in the event of any untoward situation. Design requirements for such systems need high reliability, availability, computational ability for measurement via sensors, control action via actuators, data communication and human interface via keyboard or display. All these attributes of FT-RTC systems are required to be implemented using best known methods such as redundant system design using diversified bus architecture to avoid common cause failure, fail-safe design to avoid unsafe failure and diagnostic features to validate system operation. In this context, the system designer must select efficient as well as highly reliable diversified bus architecture in order to realize fault-tolerant system design. This paper presents a comparative study between CompactPCI bus and Versa Module Eurocard (VME) bus architecture for designing FT-RTC systems with switch over logic system (SOLS) for NPP. © 2014 Atomic Energy Society of Japan. All rights reserved.

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Behera, R. P., Murali, N., & Satya Murty, S. A. V. (2014). Designing fault-tolerant real-time computer systems with diversified bus architecture for nuclear power plants. Journal of Nuclear Science and Technology, 51(4), 521–525. https://doi.org/10.1080/00223131.2013.878231

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