IEC 61290-10-2:2007 PDF
Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 29
- Дата публикации:
- 18 сентября 2007 г.
- Издание:
- IEC IS 61290 edition 2 version 1
- ICS:
- 33.180.30
Applies to optical fibre amplifiers (OFA) using active fibres, containing rare-earth dopants, currently commercially available. The object is to establish uniform requirements for accurate and reliable measurements of the signal-spontaneous noise figure as defined in IEC 61291-1.The test method described is, in general, for multichannel applications. Single-channel applications are a special case of multichannel applications. This second edition cancels and replaces the first edition. It is a technical revision with updated references and cautions on proper use of the procedure.
Abstract
Overview
IEC 61290-10-2:2007 is an international standard developed by the International Electrotechnical Commission (IEC) focusing on optical amplifiers (OFA), specifically the testing methods for multichannel parameters using the pulse method and a gated optical spectrum analyzer (OSA). This standard applies to optical fiber amplifiers employing active fibers doped with rare-earth elements such as erbium, currently commercially available. It aims to establish uniform, accurate, and reliable measurements of the signal-spontaneous noise figure (NF), a critical parameter defined in IEC 61291-1 for evaluating amplifier performance.
The pulse method described here selectively measures amplified spontaneous emission (ASE) noise independently from the amplified signal power by applying pulsed optical inputs and synchronizing measurements with the OSA gating. This technique is designed primarily for multichannel applications and is also applicable to single-channel cases as a subset.
Key Topics
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Scope and Application This standard is dedicated to rare-earth doped optical fiber amplifiers, detailing how to measure the signal-spontaneous noise figure accurately, a key factor in fiber optic communication systems for understanding noise performance across multiple wavelengths.
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Test Methodology Pulse method with gated optical spectrum analyzer: The approach involves launching optical pulses into the amplifier under test and measuring ASE levels during the ‘off’ period of the pulse via a gated OSA, while the ‘on’ period measurement captures the combined amplified signal and ASE. The difference between these measurements allows precise noise figure calculation.
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Test Setup and Apparatus
- Source module, which can be either:
- CW sources with optical switching and attenuation, or
- Directly modulated sources with attenuation.
- Optical attenuators for power control, optical spectrum analyzer with gating capability, and synchronization systems.
- Additional equipment includes optical power meters and polarization controllers if applicable.
- Source module, which can be either:
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Measurement Parameters
- Optical pulse characteristics, such as repetition frequency and width, carefully considered to minimize gain recovery errors.
- Synchronization of pulse timing with OSA gating to isolate ASE from signal noise accurately.
- Calibration procedures ensure precise power measurement and reliability.
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Noise Figure Calculation Based on the difference between spectral power measurements during pulse 'on' and 'off' times, taking into account amplifier gain and calibration coefficients.
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Dynamic Gain Considerations Gain recovery dynamics of rare-earth doped OFAs, especially erbium-doped fiber amplifiers, affect measurement accuracy. The standard advises validation of modulation frequencies to limit errors within 1 dB, with procedures detailed in Annex A for evaluating gain recovery errors.
Applications
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Optical Communication Systems Ensures precise noise figure characterization in wavelength-division multiplexing (WDM) enabled optical fiber networks, improving system design and performance evaluation.
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Amplifier Manufacture and Quality Control Standardized testing allows manufacturers to verify OFA noise performance reliably, leading to improved product consistency and compliance with international norms.
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Research and Development Supports R&D in advanced multi-wavelength optical amplifiers, helping engineers understand amplifier behavior in dynamic pulsed environments.
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System Integration and Maintenance Network operators use standardized test methods to evaluate amplifier conditions in installed systems, contributing to optimized maintenance and troubleshooting.
Related Standards
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IEC 61291-1: Optical amplifiers – Part 1: Generic specification – Defines key parameters including the signal-spontaneous noise figure that IEC 61290-10-2 helps measure.
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IEC 61290-10-1: Optical amplifiers – Test methods – Part 10-1: Multichannel parameters – Optical switching technique – An alternative method for noise figure measurement to the pulse gated OSA technique.
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IEC 61290 series: Other parts covering basic specifications and different test methods for optical amplifiers.
Keywords: IEC 61290-10-2, optical fiber amplifier testing, signal-spontaneous noise figure, multichannel parameters, pulse method, gated optical spectrum analyzer, erbium-doped fiber amplifier, ASE noise measurement, optical amplifier standards, WDM optical networks, optical amplifier gain dynamics, optical test methods, IEC standards.
Технические детали
- Технический комитет
- SC 86C - Fibre optic systems, sensing and active devices
- SKU
- IEC 61290-10-2:2007
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