Nuclear power plants. Instrumentation and control systems important to safety. Use of Failure Mode and Effects Analysis (FMEA) and related methods to support the justification of systems

Nuclear power plants. Instrumentation and control systems important to safety. Use of Failure Mode and Effects Analysis (FMEA) and related methods to support the justification of systems

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What is PD IEC/TR 62987 Nuclear power plants about ?

PD IEC/TR 62987 discusses nuclear power plants. The information in PD IEC/TR 62987 complements, for nuclear power plant applications, the procedure for Failure Mode and Effects Analysis (FMEA) in IEC 60812.  

PD IEC/TR 62987 provides guidance on nuclear-specific issues when applying Failure Mode and Effects Analysis (FMEA) and related methods to instrumentation and control systems important to safety in nuclear power plants. 

Who is PD IEC/TR 62987 - Nuclear power plants for ?

PD IEC/TR 62987 on nuclear power plants is useful for: 

  • Nuclear power plant operators
  • Systems evaluators and licensors 
  • Test laboratories 
  • Health and safety bodies  
  • Inspection personnel  

Why should you use PD IEC/TR 62987 - Nuclear power plants ?

Failure mode and effects analysis (FMEA) is a qualitative method of reliability analysis that may be applied to many different types of systems. It is an inductive method of performing system reliability or safety analysis from a low to a high level. There is a need to provide guidance on nuclear-specific issues, for example, common cause failure and meeting the single failure criteria when applying failure mode and effects analysis (FMEA) and related methods to instrumentation and control systems important to safety in nuclear power plants. 

PD IEC/TR 62987 provides you with information, in the context of applications to nuclear power plant instrumentation and control systems important to safety. Some of the aspects discussed are: 

  • Terminology used in FMEA processes
  • Benefits of using FMEA
  • Shortcomings and limitations of FMEA methods
  • Anticipated outcomes of and claims to be made from application of FMEA
  • Relationships to other analysis methods used in establishing the safety/reliability of 
  • Nuclear power plant designs
  • Typical FMEA process inputs
  • Typical FMEA process outputs