Optimal System for Warm Standby Components in the Presence of Standby Switching Failures, Two Types of Failures and General Repair Time

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Optimal System for Warm Standby Components in the Presence of Standby Switching Failures, Two Types of Failures and General Repair Time

Two different system configurations with warm standby components, standby switching failures, two types of failures "common cause failure and hardware failure" and general repair are compared based on the availability. The time-tofailure for each of the primary and warm standby components are assumed to follow the exponential distribution. Laplace transforms of state probability equations are d...

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On Reliability of (n + 1)-Unit Warm Standby System based on Imperfect Repair Facility and Two Types of Failures

R. K. Agnihotri and S. K. Statsangi, Analysis of a two-unit redundant system with optimum interchangement time, Reliab. 35 (1995), no. 4, 749–750. B. S. Dhilon, Om human reliability bibliography, Microelectron. Reliab. 20 (1980), 371–373. B. S. Dhilon, Stochastic models for predicting human reliability, Microelectron. Reliab. 22 (1982), 491–496. B. S. Dhilon and R. B. Mishra, Reliability evalua...

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Analysis of Warm Standby Systems Subject to Common-Cause Failures with Time Varying Failure and Repair Rates

This paper presents reliability and availability analysis of a k-out-of-(M+S): G warm standby system with time varying failure and repair rates in presence of commoncause failure. The system composed of two categories of components. One category of the components is of type 1 has M components and the other is of type 2 has S components. Type 1 have a lower failure rate. Markov method is used to...

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Cost Analysis of a Two-Unit Cold Standby System Considering Hardware, Software Failures and Inspection with Maximum Repair Time

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Reliability Measures of a Repairable System with Standby Switching Failures and Reboot Delay

Abstract: In this paper, we study the reliability measures of a repairable system with M operating units, W warm standby units, and R repairmen in which switching failures and reboot delay are considered. It is assumed that there is a significant failure probability q in the switching process. Failure times of an operating unit and of a standby unit are assumed to be exponentially distributed w...

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ژورنال

عنوان ژورنال: International Journal of Computer Applications

سال: 2012

ISSN: 0975-8887

DOI: 10.5120/6379-8846