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Multi-station scanning and spot measurement sharing integrated system and method based on optical communication test

A multi-station, optical communication technology, applied in the field of multi-station scanning and point measurement sharing integrated system, can solve the problems of low utilization rate of equipment, large manpower and material resources, increase of staff training and equipment investment cost, etc.

Pending Publication Date: 2021-05-04
深圳市宸平信息技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In the traditional optical communication test, the test station uses different stations and systems for point measurement and scanning. The scanning station generally uses a set of adjustable light source, scanning polarization controller and multiple power meters for scanning test; Spot testing is generally configured with a single-point light source, a single-point polarization controller, and a multi-channel power meter for single-point testing; in addition, traditional testing methods also require relevant technicians to build manual stations through optical devices, so as to test IL, RL , the purpose of optical communication parameters such as ISO
This approach not only has a low utilization rate of equipment, but also requires a lot of manpower and material resources to supervise, and greatly increases the cost of employee training and equipment investment.

Method used

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  • Multi-station scanning and spot measurement sharing integrated system and method based on optical communication test
  • Multi-station scanning and spot measurement sharing integrated system and method based on optical communication test
  • Multi-station scanning and spot measurement sharing integrated system and method based on optical communication test

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Embodiment 1

[0037] The preferred embodiment of the present invention is as figure 1 As shown, it includes a broadband light source 1, a single point light source 2, a first optical switch 3, a second optical switch 4, a third optical switch 5, a fourth optical switch 6, a first polarization controller 7, an optical splitter 8, The spectrometer 9 and the first test box 10; the first test box 10 and the first PC end are electrically connected and connected to the network through a serial line and a hub; the spectrometer 9 is electrically connected to the first PC end, and the The broadband light source 1 and the first optical switch 3 are connected with electrical signals and optical signals, and the first optical switch 3 is connected with the first test box 10 with electrical signals and optical signals. The test box 10 is connected to the first device under test A1 for optical signals, the first test box is connected to the second optical switch 4 for electrical signals and optical signa...

Embodiment 2

[0054] The present invention discloses a method, including the integrated system of multi-station scanning and point measurement sharing based on optical communication test as described in the first aspect, please refer to Image 6 , the method includes:

[0055] S1. Control the first optical switch to evenly distribute the broadband light source to multiple test stations;

[0056] S2. Perform a scan test and a single point test on the device under test in multiple test stations respectively.

[0057] Preferably, said performing scan test and single-point test on the device under test in a plurality of test stations respectively includes:

[0058] S21. In the first test station, control the first optical switch to switch to the optical channel corresponding to the broadband light source;

[0059] S22. Control the first test box to receive the scanning light source signal output by the broadband light source, and transmit the scanning light source signal to the first device u...

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Abstract

The invention discloses a multi-station scanning and spot measurement sharing integrated system and method based on an optical communication test. The multi-station scanning and spot measurement sharing integrated system comprises a broadband light source, a single-point light source, a first optical switch, a second optical switch, a third optical switch, a fourth optical switch, a first polarization controller, an optical splitter, a spectrometer and a first test box. The first test box is connected with the first PC end; the spectrograph is connected with the first PC end, the broadband light source is connected with the first optical switch, the first optical switch is connected with the first test box, the first test box is connected with the first tested device and the second optical switch, the first tested device is connected with the second optical switch, the single-point light source is connected with the third optical switch, and the third optical switch is connected with the optical splitter. The optical splitter is connected with the first test box; and the fourth optical switch is connected with the first test box, and the spectrometer is connected with the fourth optical switch. According to the invention, scanning and spot measurement sharing of a plurality of test stations can be completed, the production cost is greatly reduced, and the equipment utilization rate and the optical communication test efficiency are effectively improved.

Description

technical field [0001] The invention relates to the technical field of optical communication testing, in particular to an integrated system for multi-station scanning and spot testing sharing based on optical communication testing. Background technique [0002] In the traditional optical communication test, the test station uses different stations and systems for point measurement and scanning. The scanning station generally uses a set of adjustable light source, scanning polarization controller and multiple power meters for scanning test; Spot testing is generally configured with a single-point light source, a single-point polarization controller, and a multi-channel power meter for single-point testing; in addition, traditional testing methods also require relevant technicians to build manual stations through optical devices, so as to test IL, RL , The purpose of optical communication parameters such as ISO. This approach not only has a low utilization rate of equipment, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B10/07
CPCH04B10/07
Inventor 刘利平袁佳鑫王正伍
Owner 深圳市宸平信息技术有限公司
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