Standard Details
Collection of data for use in reliability, availability, and maintainability assessments of industrial and commercial power systems is described in this recommended practice. It is likely to be of greatest value to the power-oriented engineer with limited experience in the area of reliability. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
Sponsor Committee |
IAS/I&CPS - Industrial & Commercial Power Systems
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Status |
Active
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Board Approval |
2013-03-06
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History |
Published Date:2013-04-22
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Additional Resources Details
PAR |
Working Group Details
Working Group |
3006 WG - Power Systems Reliability
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Working Group Chair |
Robert Arno
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Sponsor Committee |
IAS/I&CPS - Industrial & Commercial Power Systems
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Society | |
IEEE Program Manager | |
Active Projects |
This recommended practice describes the fundamentals of reliability analysis as it applies to the planning and design of industrial and commercial electric power distribution systems. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
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Existing Standards |
Methods for determining the reliability of 7?24 continuous power systems in industrial and commercial facilities are described in this recommended practice. The method of reliability analysis by probability methods is described first. This is followed by a discussion of how to evaluate the results and how to implement changes to ensure that the expected degree of reliability is achieved.
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This recommended practice describes data supporting the reliability evaluation of existing industrial and commercial power systems. It is likely to be of greatest value to the power-oriented engineer with limited experience in the area of reliability. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
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Described in this recommended practice are ways for using probability methods to conduct a reliability analysis of industrial and commercial power systems. It is likely to be of greatest value to the power-oriented engineer with limited experience in the area of reliability. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
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Data supporting the reliability evaluation of existing industrial and commercial power systems are described. This recommended practice is likely to be of greatest value to the power-oriented engineer with limited experience in the area of reliability. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
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This recommended practice describes how to determine the impact of preventive maintenance on the reliability of industrial and commercial power systems. It is likely to be of greatest value to the power-oriented engineer with limited experience in the area of reliability. It can also be an aid to all engineers responsible for the electrical design of industrial and commercial power systems.
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