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2024-04-09 1656
The impact of fiber quality on attenuation can be meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.red through experiments using the following commonly used testing methods:
Truncation method:
This is the benchmark test method for meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring the attenuation characteristics of optical fibers. Without changing the injection conditions, the attenuation of the fiber can be directly obtained by meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring the optical power of the two cross-sections of the fiber.
Use a fiber optic mode field diameter and attenuation spectrum meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring instrument for testing, and record the transmission power.
Insertion loss method:
This method is an alternative test method for meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring the attenuation characteristics of optical fibers. In principle, it is similar to the truncation method, but the optical power at the fiber injection end is the output optical power at the injection system output end.
Note that the meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.red fiber attenuation includes the attenuation of the test device, so the meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.rement results must be corrected separately with additional connector loss and reference fiber segment loss.
Backscatter method:
Backscattering method is another alternative experimental method for meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring the attenuation characteristics of optical fibers. It meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.res the backscattered light power from different points in the fiber to the beginning of the fiber.
This is a single ended meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.rement method, and the instrument used for testing is an optical time-domain reflectometer.
Comparative method:
Prepare fiber optic samples of different qualities, such as high-quality and low-quality fibers.
Meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.re the attenuation characteristics of these fiber samples using the truncation method, insertion loss method, or backscatter method mentioned above.
By comparing the attenuation data of different quality optical fibers, the impact of fiber quality on attenuation can be analyzed.
When conducting experiments, the following points should also be noted:
Ensure stable testing environment and avoid external interference.
Use high-quality light sources and meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.ring equipment to reduce testing errors.
Perform multiple meᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.rements on each fiber optic sample and take the average to improve the accuracy of the results.
Select the appropriate testing wavelength and conditions based on the experimental purpose and fiber type.
ᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.
Through these experimental methods, the impact of fiber quality on attenuation can be quantitatively evaluated, providing important references for the design and optimization of fiber optic communication systems.ᐃᑭᒋᐊᕐᕕᖓ ᑲᑉᐳᑎᓗᒍ %u.