Test system and test method of optical module with oam function

A test system and optical module technology, applied in transmission systems, electromagnetic wave transmission systems, electrical components, etc., can solve problems such as inconsistent judgment standards, low production efficiency, and complicated operations, so as to improve test efficiency, solve test costs, and solve mutual problems. The effect of connecting

Active Publication Date: 2021-06-08
SONT TECH (SHEN ZHEN) LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0012] In this semi-active optical network architecture, according to the protocol requirements, the optical modules on the AAU side and the DU side need to identify the OAM wavelength information when they are respectively used as the receiving end. There are currently two major problems in response to this protocol requirement. The first is that the industry No instrument manufacturer has yet developed a corresponding test instrument system, that is, no benchmarking instrument system can be used. The second is the test system developed by the manufacturer involved in the development of OAM signal processing function modules. There are two common problems. One is that it is very difficult to operate. Complicated and low in production efficiency; in addition, it is even more fatal that the judgment standards of various manufacturers are inconsistent, and it is impossible to achieve interoperability between different manufacturers

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  • Test system and test method of optical module with oam function
  • Test system and test method of optical module with oam function
  • Test system and test method of optical module with oam function

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Embodiment 1

[0079] Such as Figure 4 As shown, the embodiment of the present invention provides a test system of an optical module having an OAM function, and the test system of the present embodiment can include:

[0080] A reference numeral component of the mixed optical signal, the mixed optical signal emitted by the reference light assembly includes: 25 g of the main service optical signal and an OAM optical signal carrying a specified wavelength information based on the OAM modulation information;

[0081] Attenuators, for simulating optical road loss of mixed optical signals; it is mainly used to simulate optical path loss in commercial scenes used in the light module. That is, in the commercial scene of the optical module to be tested, the optical network architecture between the AAU side and the DU side, there are various connector, optical fiber jumper, optical switch, optical splitter, passive portion These different types of devices can cause optical power attenuation, and the integ...

Embodiment 2

[0125] According to another aspect of the embodiment of the present invention, the embodiment of the present invention further provides a test method of the above test system, and the test method of the present embodiment can include:

[0126] M1, the control component gets the number to be measured;

[0127] M2, the control assembly transmits 25 Gbps electrical signal and OAM modulation information to the reference light assembly based on the number of the optical module to be measured, so that the reference light assembly will emit a mixed optical signal according to the electrical signal and the OAM modulation information;

[0128] Wherein, the OAM modulation information is information generated according to the corresponding relationship between the number of the optical module to be measured and the wavelength information of the OAM optical signal;

[0129] M3, the control assembly receives the identification result information of the light module to determine whether the wav...

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Abstract

The invention relates to a test system and a test method of an optical module with OAM function. The test system includes: a reference optical component that sends out a mixed optical signal. The OAM optical signal of the wavelength information; the optical module to be tested is used to receive the mixed optical signal and identify the wavelength information of the OAM optical signal; the control component is used to determine whether the optical module to be tested is qualified according to the identification result, and the OAM modulation information is used for the control component according to The information generated by the corresponding relationship between the number of the optical module to be tested and the wavelength information of the OAM optical signal, the reference optical component receives the OAM modulation information and stores it in the specified bit position of the data exchange area of ​​the reference optical component. The test system of the present invention can effectively solve the problem that various manufacturers cannot test the wavelength information of the OAM optical signal, realize the effect of consistent judgment standards and interconnection and intercommunication, and increase production efficiency at the same time.

Description

Technical field [0001] The present invention relates to the field of optical communication testing, and more particularly to a test system and test method of an optical module having an OAM function. Background technique [0002] At present, the major domestic operators actively promote the 5G pre-transmission network based on semi-active optical network architecture, the 12-wave light module with OAM (Operation Administration and Maintenance, Operation and Maintenance Management) function, becomes a hot spot, according to existing protocol requirements Such optical module transmit terminal (TX) contains two major functional modules, that is, a conventional 25G transmitter main service module, with 25G primary traffic signal transmission, and another is an OAM signal transmitting function module for transmitting a low frequency. OAM optical signal (OAM optical signal wavelength information is one of its composition components), the two optical signals are superimposed together in...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04B10/079H04B10/073H04B10/516
CPCH04B10/073H04B10/0795H04B10/07957H04B10/516
Inventor 蒋昌明蓝海涛黄博强郑波过开甲魏志坚张伟孙鼎
Owner SONT TECH (SHEN ZHEN) LTD
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