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A method and device for optimizing the maintenance cycle of urban rail trains

A technology for maintenance cycle and urban rail trains, applied in data processing applications, forecasting, instruments, etc., can solve the problem of no effective adjustment method of maintenance cycle, so as to overcome the risk of uncertainty, scientific and effective adjustment, and accurate and reliable evaluation results Effect

Active Publication Date: 2021-02-19
广州运达智能科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] In order to solve the technical problem that there is no effective way to adjust the maintenance cycle of existing urban rail trains, the present invention provides a method for optimizing the maintenance cycle of urban rail trains. Many uncertain risks caused by artificial experience adjustment and other methods

Method used

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  • A method and device for optimizing the maintenance cycle of urban rail trains
  • A method and device for optimizing the maintenance cycle of urban rail trains
  • A method and device for optimizing the maintenance cycle of urban rail trains

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0054] This embodiment proposes a method for optimizing the maintenance period of urban rail trains. By calculating the maintenance adjustment period of each item (the maintenance item of the equipment inspection part), the item period of the equipment inspection part is uniformly adjusted to achieve "equipment inspection". The purpose of repairing optimization is to replace manual work.

[0055] like figure 1 shown. The method includes the following steps:

[0056] Step 1: By obtaining the historical detection results and manual re-inspection results of the equipment, calculate the detection accuracy rate R of the equipment for the nth maintenance item n (In the early stage of equipment use, the accuracy rate provided by the manufacturer can be used instead).

[0057] Step 2: By obtaining the historical failure information of the nth item point, calculate the failure rate λ of the item point n n (t) (failure rate as a function of time) can be replaced by the component fai...

Embodiment 2

[0080] Based on the optimization method provided by the above embodiments, this embodiment provides a device for optimizing the maintenance cycle of urban rail trains.

[0081] like figure 2 As shown, the device includes a first acquisition unit, a second acquisition unit, a first calculation unit, a second calculation unit and an analysis unit:

[0082] The first acquisition unit obtains the historical test results and manual review result data of a certain test equipment, and calculates the detection accuracy rate R of the equipment for the nth maintenance item n (If the detection equipment is in the initial stage of use, the detection accuracy rate R of the equipment for the nth maintenance item n The equipment detection accuracy provided by the manufacturer is obtained by the first acquisition unit instead);

[0083] The second acquisition unit obtains the historical fault data of the nth maintenance item, and calculates the failure rate λ of the nth maintenance item n...

Embodiment 3

[0102] Adopt the method and device that above-mentioned embodiment 1 and embodiment 2 propose to be applied to a depot that has increased trackside maintenance equipment, reduce its maintenance personnel investment and satisfy the adjustment of the maintenance period of original maintenance effectiveness, specifically as follows:

[0103] 1. For the item: "Check whether the wheel tread is scratched", according to the factory data provided by the equipment supplier, the detection accuracy rate of "wheelset size and tread scratch detection equipment" for the "tread scratch" item is R n = 75%.

[0104] 2. According to the historical tread abrasion data given by the subway company, the failure rate of "tread abrasion" conforms to the accidental failure model, and the calculated failure rate is: λ n (t) = 0.5% / day (the failure rate at this point is independent of time).

[0105] 3. According to the existing maintenance period of a subway m=4 days, for this point, the existing main...

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Abstract

The invention discloses a method and device for optimizing the maintenance cycle of urban rail trains. The invention calculates the maintenance effectiveness of each maintenance item in the original maintenance mode (for example, relying only on manual maintenance), thereby providing a solution for the maintenance item. Maintenance capability evaluation index; then by adding the maintenance efficiency calculation model corresponding to the maintenance items in the adjusted maintenance mode, and making the maintenance efficiency not less than the maintenance efficiency in the original maintenance mode, a new maintenance efficiency that meets the requirements can be analyzed Maintenance cycle. That is to say, the present invention scientifically and effectively realizes the adjustment of the maintenance cycle through a quantitative calculation model, and overcomes the many uncertain risks caused by the existing adjustments that only rely on human experience.

Description

technical field [0001] The invention relates to the technical field of rail vehicle maintenance, in particular to a method and device for optimizing the maintenance cycle of urban rail trains. Background technique [0002] In the maintenance operation of urban rail transit trains, due to the large number of maintenance items, the maintenance is time-consuming and labor-intensive. For example, the time for a "four-day inspection" operation for a train is 2 people·50 minutes, and several hours of the entire section must be completed every night. The overhaul of all items of ten trains will consume a large amount of manpower. In recent years, with the development of industrial intelligence, train maintenance units have installed a series of trackside detection equipment (such as 360° image recognition under the car, wheel set size detection system, pantograph detection system, etc.) Carry out automated inspections in order to reduce human input. [0003] However, the existing...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06Q10/04G06Q50/30
CPCG06Q10/04G06Q50/40
Inventor 张子舆邹梦卜显利胡林桥王志云
Owner 广州运达智能科技有限公司