Reliability analysis method for high-voltage electrical system of pure electric commercial vehicle
A high-voltage electrical and analytical method technology, applied in electrical components, information technology support systems, systems based on fuzzy logic, etc., can solve the problem of unknown probability of events at the bottom of the sub-fault tree, incomplete evaluation of reliability, and inability to describe state degradation well Mode top event probability and other issues to achieve the effect of saving fault diagnosis time
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Embodiment 1
[0038] Refer figure 1 For the first embodiment of the present invention, this embodiment provides a high-voltage electrical system reliability analysis method of pure electric vehicle, including:
[0039] S1: Divide the pure electric vehicle high voltage electrical system into three subsystems of high pressure power battery systems, high voltage harness systems, and high-voltage drive motor systems, respectively establish a fuzzy fault tree for each subsystem.
[0040]In this example, the establishment of the polymorphic fault tree is taken as an example of the pure electric vehicle high voltage harness system. First, according to the high voltage harness system, it is divided into functional failure mode and state deterioration mode. For functional failure mode failure, it can include Mechanical damage, main insulation failure, fails, conductor connection failure, stress cone failure, overheating failure, protector failure, and then analyze the failure of these faults until the b...
Embodiment 2
[0074] In order to verify the technical effects used in the method, the present embodiment selects a conventional fault tree quantitative analysis method and a comparison test using the method to verify the true effect of the method.
[0075] The quantitative analysis method of traditional fault trees is difficult to ask for uncertain problems with the probability of decnation events and base events, and the fault diagnosis is longer.
[0076] To verify that the method can troubleshoot the system faster than the conventional fault tree quantitative analysis method. In this embodiment, the conventional fault tree quantitative analysis method and the method are used to perform real-time fault analysis of the pure electric vehicle high voltage line beam system, respectively. The time consumed by the two methods, and the time spent on the method of failure analysis of the method is saved 1 / 3 compared to the conventional fault tree quantitative analysis method.
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