Photoelectric module reverse testing method and photoelectric module fault diagnosis and discrimination method

A technology of photoelectric modules and testing methods, which is applied in the direction of measuring devices, measuring electrical variables, instruments, etc., can solve the problems affecting the performance improvement and improvement of all-fiber current transformers, and the inability to establish more accurate failure models of optoelectronic devices, etc., so as to improve the failure rate Efficiency in diagnosis, enabling recycling, and ensuring integrity

Active Publication Date: 2019-05-14
BEIJING AEROSPACE TIMES OPTICAL ELECTRONICS TECH
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AI Technical Summary

Problems solved by technology

At present, there is still a lack of systematic fault diagnosis and discrimination methods for optoelectronic modules, and it is impossible to establish a more accurate optoelectronic device failure model, which affects the performance improvement and promotion of all-fiber current transformers.

Method used

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  • Photoelectric module reverse testing method and photoelectric module fault diagnosis and discrimination method
  • Photoelectric module reverse testing method and photoelectric module fault diagnosis and discrimination method
  • Photoelectric module reverse testing method and photoelectric module fault diagnosis and discrimination method

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Embodiment Construction

[0039] In order to make the objectives, technical solutions and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below with reference to the accompanying drawings.

[0040] A kind of photoelectric module fault diagnosis method of the present invention, such as figure 1 shown, the details are as follows:

[0041] In this embodiment, the step of recording information is mainly to summarize and analyze the basic information of the suspected faulty photoelectric module, so as to facilitate subsequent fault diagnosis and discrimination.

[0042] After opening the shell of the suspected faulty photoelectric module, record the basic information of the module, including the module production number, optical path part number, circuit board number, and the number of the all-optical current transformer to which the module belongs, and the applied substation, etc.; record the fault of the module Alarm information, i...

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Abstract

The invention discloses a photoelectric module reverse testing method and a photoelectric module fault diagnosis and discrimination method. The photoelectric module fault diagnosis and discriminationmethod comprises the steps of appearance inspection, basic photoelectric inspection and fault recurrence inspection, and as for a fault recurrence module, system testing, loss calculation and fault positioning analysis continue to be conducted; and as for fault non-recurrence module, temperature and humidity environment simulation test detecting is adopted, if a fault recurs, the system testing step is conducted, if the fault fails to recur, Allan variance calculation, detector return and phase modulation signal detection continue to be conducted, set threshold conditions are compared throughthe calculation results for performance evaluation, the module with poor performance serves as a test material, and the module with the good performance serves as a spare part. The photoelectric module fault diagnosis and discrimination method has the characteristic that fault diagnosis and discrimination are comprehensive, accurate and reliable.

Description

technical field [0001] The invention relates to a photoelectric module reverse testing method and a fault diagnosis and discrimination method, belonging to the field of optical fiber current transformers. Background technique [0002] With the continuous development and advancement of digital substation smart grids, all-fiber current transformers are increasingly favored by smart grid construction due to their unique advantages that are different from traditional electromagnetic transformers. However, the main factors restricting the further large-scale application of all-fiber current transformers are their poor long-term operation stability and high failure rate. [0003] The all-fiber current transformer is mainly composed of a sensitive ring, a secondary collector and a polarization-maintaining optical cable connecting them. Among them, the optoelectronic module composed of optoelectronic components is the core component of the secondary collector, which is mainly respo...

Claims

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Application Information

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IPC IPC(8): G01R35/02
Inventor 张志鑫靳俊杰王利清司磊
Owner BEIJING AEROSPACE TIMES OPTICAL ELECTRONICS TECH
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