Probability whole life cycle cost-based power transformer performance comprehensive evaluation method
A full life cycle, power transformer technology, applied in the direction of instruments, data processing applications, resources, etc.
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Embodiment 1
[0077] A probabilistic whole life cycle cost power transformer efficiency evaluation method is characterized in that it includes the following steps:
[0078] (1) Using the life cycle cost model of the power transformer, estimate the probability distribution function of the life cycle cost of the power transformer, and calculate the probability life cycle cost, mean value, variance and standard deviation rate, including the following sub-steps:
[0079] A. Determine the life cycle cost model of the power transformer;
[0080] B. Collect the relevant data of each variable in the power transformer life cycle cost model and carry out probability analysis to it, and determine the probability distribution function;
[0081] C. Using the Monte Carlo simulation method to estimate the probability distribution function of the life cycle cost of the power transformer, the number of simulations is determined by the accuracy requirements of the performance evaluation of the power t...
Embodiment 2
[0131] A probabilistic full life cycle cost power transformer efficiency comprehensive evaluation method based on one of the above schemes, characterized in that reliability, maintainability, technological advancement and environmental impact are added to the evaluation index sequence of the matter-element model For the four indicators, the maintainability and technical advancement are scored by experts according to Table 4, and the environmental impact is scored by experts according to Table 5, and the average value of all expert scores is used as the index value.
[0132] The engineering background of this embodiment and the two alternatives are exactly the same as in Embodiment 1.
[0133] After determining the probability distribution function of the whole life cycle cost, and the power transformer of the project scheme 1 and scheme 2 of embodiment 1, the whole life probability cost and reliability, technological advancement, maintainability and environmental...
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