Tracking management system of railway device
A management system and equipment technology, applied in the field of tracking management system, can solve the problems of inconvenient production and maintenance, underutilization of computer technology, failure to grasp the service life of parts in time, and achieve the effect of convenient management
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Embodiment 1
[0061] Taking a vehicle-mounted device (hereinafter referred to as SN1) as an example, SN1 includes a power supply board, a signal acquisition board, a control output board, a driving record board, a backplane (providing interfaces between boards) and a chassis, among which each board and There are logo storage modules on the chassis, and besides the logo storage module, there are logo read-write modules and logo communication modules on the driving recorder. In this embodiment, CAN communication is used for communication between all vehicle-mounted equipment components, and 4G communication is used among vehicle-mounted equipment, equipment servers, and management systems; all identification storage module memory adopts EEPROM; all labels adopt the form of two-dimensional code plus electronic label , collectively referred to as labels in this embodiment; the management system is installed on a PC; the cable connection of equipment is not the main function of the present invent...
Embodiment 2
[0076] 1. In the management system, query the information records of the board by inputting the board identification information or scanning the board identification information, such as board maintenance information, work information, working life query, etc.;
[0077] 2. You can send query commands (such as CX+ board identification information) to the server through mobile phone text messages to query board information records;
[0078] 3. In the management system, establish a three-dimensional model of the equipment, click on a certain part of the equipment and pop up all the registration marks of the part, and select any one of the mark information for visual query;
[0079] 4. The server pushes maintenance reminders to maintenance personnel or users according to the production date of the equipment or parts and the date of first loading according to the corresponding maintenance procedures. For example, it is stipulated that ventilation and power supply are required for th...
Embodiment 3
[0081] On the basis of the above-mentioned embodiment 1, the query and management of fault information can be carried out:
[0082] 1. Server self-learning fault location: The server compares the meaning of the fault code with the maintenance records, and sorts the number of faults under a certain fault code. Codes and possible devices are automatically pushed to maintenance personnel or users through (not limited to) emails, text messages, or pop-up windows in the management system; for example, the STEP6 fault code CTR01 in Embodiment 1 indicates that the control part is faulty. After statistical historical maintenance records, the control If the number of relay failures in the circuit is 10, the number of diode failures is 2, and the number of capacitor failures is 0, the push message is: failure code CTRO1, control circuit failure, and the possible failure devices are relays, diodes, and capacitors in descending order of probability.
[0083] 2. The server calculates the d...
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