Optical amplifiers - Distributed Raman amplification

Optical amplifiers - Distributed Raman amplification

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What is this PD IEC/TR 612926 - Distributed Raman amplification about?  

PD IEC/TR 612926 discusses optical amplifiers with a focus on distributed Raman amplification. PD IEC/TR 612926 is the sixth part of the PD IEC/TR 61292 multi-series on optical amplifiers that is a technical report, deals with distributed Raman amplification (DRA). The main purpose of the report is to provide background material for future standards (specifications, test methods, and operating procedures) relating to DRA.  

PD IEC/TR 612926 technical report covers the following aspects: 

  • General overview of Raman amplification 
  • Applications of DRA 
  • Performance characteristics and test methods related to DRA 
  • Operational issues relating to the deployment of DRA 

As DRA is a relatively young technology, and still rapidly evolving, some of the material in PD IEC/TR 612926 has become obsolete or irrelevant in a relatively short period. PD IEC/TR 612926 is frequently updated in order to minimize this possibility. 

Who is PD IEC/TR 612926 - Distributed Raman amplification for? 

PD IEC/TR 612926 on distributed Raman amplification is useful for: 

  • Manufacturers of optical amplifiers 
  • Suppliers of optical amplifiers 

Why should you use PD IEC/TR 612926 - Distributed Raman amplification 

Optical amplifiers (OAs) are necessary components as boosters, line, and pre-amplifiers for current optical network systems. Distributed Raman amplification (DRA) describes the process whereby Raman pump power is introduced into the transmission fibre, leading to signal amplification within the transmission fibre though stimulated Raman scattering. 

PD IEC/TR 612926 provides an overview of DRA and its applications. PD IEC/TR 612926 also provides a detailed discussion of the various performance characteristics related to DRA, some of the methods that can be used to test these characteristics, and some of the operational issues related to the distributed nature of the amplification process, such as the sensitivity to transmission line quality and eye-safety.