TY - GEN
T1 - Research on the algorithm of evaluating and analyzing stationary operational availability based on mission requirement
AU - Wang, Naichao
AU - Jia, Zhiyu
AU - Wang, Yan
AU - Mao, Yilan
PY - 2009
Y1 - 2009
N2 - The popular mathematical and simulation methods both have some shortage in evaluating the stationary operational availability. The former assumes that the item demand is independent of the operating systems, which can introduce a serious underestimation of the operational availability. The latter in order to get acceptable confidence level requires a large of trials under the pre-assigned scenario. This paper addresses the issue of determining the stationary operational availability basing on mathematical models. Not only the system passivation and operation mission, but also other influencing factors, such as the system design parameters, the number of working systems, turn round time and maintenance time, are all considered in the model. In order to achieve the result, a powerful approximation method to the operational availability is given. At last, an example is used on researching the relationship among aforementioned factors. Experiments show that the model works well with Monte Carlo simulation result and so, the feasibility and rationality of the mathematical method are validated.
AB - The popular mathematical and simulation methods both have some shortage in evaluating the stationary operational availability. The former assumes that the item demand is independent of the operating systems, which can introduce a serious underestimation of the operational availability. The latter in order to get acceptable confidence level requires a large of trials under the pre-assigned scenario. This paper addresses the issue of determining the stationary operational availability basing on mathematical models. Not only the system passivation and operation mission, but also other influencing factors, such as the system design parameters, the number of working systems, turn round time and maintenance time, are all considered in the model. In order to achieve the result, a powerful approximation method to the operational availability is given. At last, an example is used on researching the relationship among aforementioned factors. Experiments show that the model works well with Monte Carlo simulation result and so, the feasibility and rationality of the mathematical method are validated.
KW - Maintainability
KW - Operational availability
KW - Reliability
KW - Spare parts
KW - Stationary state
UR - https://www.scopus.com/pages/publications/77955941683
U2 - 10.1109/ICRMS.2009.5270219
DO - 10.1109/ICRMS.2009.5270219
M3 - 会议稿件
AN - SCOPUS:77955941683
SN - 9781424449057
T3 - Proceedings of 2009 8th International Conference on Reliability, Maintainability and Safety, ICRMS 2009
SP - 159
EP - 163
BT - Proceedings of 2009 8th International Conference on Reliability, Maintainability and Safety, ICRMS 2009
T2 - 2009 8th International Conference on Reliability, Maintainability and Safety, ICRMS 2009
Y2 - 20 July 2009 through 24 July 2009
ER -