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An Innovational Safety Perspective for Reliability Assessment of Fire Extinguisher Considering Multiplicity Events

Aditya Tiwary, Praveen Patel

Abstract


Reliability evaluation of an engineering system or component or element is very important in order to forecast its availability or unavailability and other important directories related to the component or system as a whole. Reliability is the adjustable which tells about the availability or unavailability of the module under proper working conditions for a given period of time. A lot many researches has been reported for reliability analysis of distribution system. Monte Carlo simulated has been used to evaluate the modified reliability indices for radial and meshed distribution system. Strap bootstrapping technique was also used to obtain the reliability and its different parameters in literature. Customer based evaluation of the reliability was also carried out for the distribution system under study. Different optimization techniques such as particle swarm optimization, differential evolution, teaching learning-based optimization were also reported in literature for analysis of various reliability parameters. In view of above, in this paper a study based on reliability analysis of fire extinguishers installed for safety purpose is evaluated and different variable are obtained. For evaluating the reliability of the fire extinguishers, a large number of events of different parameters have been taken into consideration and reliability indices were obtained. A fire extinguisher is very important to control in case of fire for safety purpose.


Keywords


Reliability, Availability, Fire Extinguisher, Fire Fighting, Safety

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References


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