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IEEE 902-1998

Withdrawn

Withdrawn

A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

IEEE Guide for Maintenance, Operation, and Safety of Industrial and Commercial Power Systems (Yellow Book)

Available format(s)

PDF

Withdrawn date

17-10-2023

Language(s)

English

Published date

31-12-1998

€141.49
Excluding VAT

Chapter 1 - Overview
  1.1 Introduction
  1.2 How to use this guide
Chapter 2 - Operating diagrams
  2.1 Introduction
  2.2 Single-line diagram (one-line diagram)
  2.3 Plan (equipment location plan)
  2.4 References
  2.5 Bibliography
Chapter 3 - System management
  3.1 Introduction
  3.2 Load distribution
  3.3 System integrity
  3.4 Power factor
  3.5 System protection coordination
  3.6 Operating economics
  3.7 References
  3.8 Bibliography
Chapter 4 - System control responsibilities and
            clearing procedures
  4.1 Introduction
  4.2 Responsibility of the owner
  4.3 Maintenance role
  4.4 Utility responsibilities
  4.5 Other workers
  4.6 Clearing procedures
  4.7 References
Chapter 5 - Maintenance strategies
  5.1 Introduction
  5.2 Definitions and acronyms
  5.3 Preventive maintenance
  5.4 Fundamentals of electrical equipment
       maintenance
  5.5 Inspection and test frequency
  5.6 Reference
  5.7 Bibliography
Chapter 6 - Maintenance testing overview
  6.1 Introduction
  6.2 Insulation tests
  6.3 Protective device testing
  6.4 Analytical tests
  6.5 Grounding tests
  6.6 Functional testing
  6.7 Testing procedures and specifications
  6.8 Bibliography
Chapter 7 - Introduction to electrical safety
  7.1 General discussion
  7.2 Exposure to electrical hazards
  7.3 Case histories
  7.4 Reasons for practicing electrical safety
  7.5 Summary
  7.6 References
  7.7 Bibliography
Chapter 8 - Establishing an electrical safety
            program
  8.1 General discussion
  8.2 Purpose
  8.3 Scope
  8.4 Content of program
  8.5 References
  8.6 Bibliography
Chapter 9 - Providing and maintaining electrically
            safe facilities
  9.1 General discussion
  9.2 Design considerations
  9.3 Installation safety requirements
  9.4 Safety and fire protection inspections
  9.5 Preplan for safe maintenance
  9.6 Repairs and replacements parts
  9.7 References
  9.8 Bibliography
Chapter 10 - Safe electrical work practices
 10.1 General discussion
 10.2 Training
 10.3 Electrical safety controls
 10.4 Working on or near de-energized equipment
 10.5 Working on or near equipment that is, or
       can become, energized
 10.6 References
 10.7 Bibliography
Chapter 11 - Protective equipment, tools, and methods
 11.1 Introduction
 11.2 Personal protective equipment
 11.3 Other protective equipment
 11.4 Protective methods
 11.5 Drawings and other documentation
 11.6 Safety audits
 11.7 Safety morale
 11.8 Bibliography
Chapter 12 - Safe use of electrical equipment
 12.1 Introduction
 12.2 Portable electrical equipment
 12.3 Test instruments and equipment
 12.4 Facilities infrastructure (power and light
       circuits)
 12.5 Bibliography
Index

Provides plant engineers with a reference source for the fundamentals of safe and reliable maintenance and operation of industrial and commercial electric power distribution systems. These fundamentals are independent of system size or complexity.

Committee
Industrial & Commercial Power Systems Standar
DocumentType
Standard
Pages
160
PublisherName
Institute of Electrical & Electronics Engineers
Status
Withdrawn

15/30259978 DC : 0 BS EN 62477-2 - SAFETY REQUIREMENTS FOR POWER ELECTRONIC CONVERTER SYSTEMS AND EQUIPMENT - PART 2: POWER ELECTRONIC CONVERTERS FROM 1000 V A.C. OR 1500 V D.C. UP TO 36 KV A.C. OR 54 KV D.C.
IEEE 3007.1 : 2010 RECOMMENDED PRACTICE FOR THE OPERATION AND MANAGEMENT OF INDUSTRIAL AND COMMERCIAL POWER SYSTEMS
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CSA C22.4 No. 1 : 2009(R2018) OBJECTIVE-BASED INDUSTRIAL ELECTRICAL CODE
IEEE 3007.2 : 2010 This recommended practice covers the maintenance of industrial and commercial power systems.
IEEE DRAFT C37.20.7 : 0 TESTING METAL-ENCLOSED SWITCHGEAR RATED UP TO 38 KV FOR INTERNAL ARCING FAULTS
IEEE 1547.2 : 2008 APPLICATION GUIDE FOR IEEE STD 1547[TM], IEEE STANDARD FOR INTERCONNECTING DISTRIBUTED RESOURCES WITH ELECTRIC POWER SYSTEMS
CSA CE CODE SAFETY PACKAGE : 2012 CE CODE SAFETY PACKAGE
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IEEE 3007.3-2012 IEEE Recommended Practice for Electrical Safety in Industrial and Commercial Power Systems
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IEEE C37.20 : 69(R1981) SWITCH GEAR ASSEMBLIES AND METAL-ENCLOSED BUS
IEEE 241 : 1990 ELECTRIC POWER SYSTEMS IN COMMERCIAL BUILDINGS
NEMA SG 3 : 1995 LOW-VOLTAGE POWER CIRCUIT BREAKERS
NEMA MG 1 : 2016 MOTORS AND GENERATORS
ASTM D 1816 : 2012 : REDLINE Standard Test Method for Dielectric Breakdown Voltage of Insulating Liquids Using VDE Electrodes
CFR 29(PTS1900-1910) : 0 LABOR - OCCUPATIONAL SAFETY AND HEALTH ADMINISTRATION, DEPARTMENT OF LABOR
IEEE 81-2012 IEEE Guide for Measuring Earth Resistivity, Ground Impedance, and Earth Surface Potentials of a Grounding System
IEEE 1106-2015 IEEE Recommended Practice for Installation, Maintenance, Testing, and Replacement of Vented Nickel-Cadmium Batteries for Stationary Applications
ASTM D 2285 : 1999 Standard Test Method for Interfacial Tension of Electrical Insulating Oils of Petroleum Origin Against Water by the Drop-Weight Method (Withdrawn 2008)
ASTM D 924 : 2015 : REDLINE Standard Test Method for Dissipation Factor (or Power Factor) and Relative Permittivity (Dielectric Constant) of Electrical Insulating Liquids
NFPA 70B : 2016 RECOMMENDED PRACTICE FOR ELECTRICAL EQUIPMENT MAINTENANCE
IEEE/ANSI Y32.9-1972 American National Standard Graphic Symbols for Electrical Wiring and Layout Diagrams Used in Architecture and Building Construction
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NETA MTS : 2011 MAINTENANCE TESTING SPECIFICATIONS FOR ELECTRICAL POWER EQUIPMENT AND SYSTEMS
IEEE 493 : 2007 DESIGN OF RELIABLE INDUSTRIAL AND COMMERCIAL POWER SYSTEMS
WC 5-1992 THERMOPLASTIC-INSULATED WIRE AND CABLE FOR THE TRANSMISSION AND DISTRIBUTION OF ELECTRICAL ENERGY
IEEE 421.3-1997 IEEE Standard for High-Potential Test Requirements for Excitation Systems for Synchronous Machines
WC 8:1988 ETHYLENE-PROPYLENE-RUBBER-INSULATED WIRE AND CABLE FOR THE TRANSMISSION AND DISTRIBUTION OF ELECTRICAL ENERGY
WC 4-1988/ICEA S-65-375 3rd Ed. (R1993) VARNISHED-CLOTH-INSULATED WIRE AND CABLE FOR THE TRANSMISSION AND DISTRIBUTION OF ELECTRICAL ENERGY
ASTM D 2129 : 2017 : REDLINE Standard Test Method for Color of Clear Electrical <brk/>Insulating Liquids (Platinum-Cobalt Scale)
IEEE 315 : 1975 GRAPHIC SYMBOLS FOR ELECTRICAL AND ELECTRONICS DIAGRAMS (INCLUDING REFERENCE DESIGNATION LETTERS)
ASTM D 1533 : 2012 : REDLINE Standard Test Method for Water in Insulating Liquids by Coulometric Karl Fischer Titration
IEEE 242-2001 IEEE Recommended Practice for Protection and Coordination of Industrial and Commercial Power Systems (IEEE Buff Book)
IEEE 637-1985 IEEE Guide for the Reclamation of Insulating Oil and Criteria for Its Use
IEEE C37.13-2015 IEEE Standard for Low-Voltage AC Power Circuit Breakers Used in Enclosures
IEEE 80-2013 REDLINE IEEE Guide for Safety in AC Substation Grounding
IEEE 95-2002 IEEE Recommended Practice for Insulation Testing of AC Electric Machinery (2300 V and Above) With High Direct Voltage
NFPA 70E : 2018 ELECTRICAL SAFETY IN THE WORKPLACE
IEEE 142 : 2007 GROUNDING OF INDUSTRIAL AND COMMERCIAL POWER SYSTEMS
NFPA 70 : 2017 NATIONAL ELECTRICAL CODE
NEMA AB 2 : 1984 PROCEDURES FOR FIELD INSPECTION AND PERFORMANCE VERIFICATION OF MOLDED CASE CIRCUIT BREAKERS USED IN COMMERCIAL AND INDUSTRIAL APPLICATIONS
WC 3-1992 RUBBER-INSULATED WIRE AND CABLE FOR THE TRANSMISSION AND DISTRIBUTION OF ELECTRICAL ENERGY
IEEE 1100 : 2005 POWERING AND GROUNDING ELECTRONIC EQUIPMENT
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IEEE 450-2010 REDLINE IEEE Recommended Practice for Maintenance, Testing, and Replacement of Vented Lead-Acid Batteries for Stationary Applications
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NEMA AB 4:2017 Guidelines for Inspection and Preventive Maintenance of Molded-Case Circuit Breakers Used in Commercial and Industrial Applications
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IEEE 400-2012 REDLINE IEEE Guide for Field Testing and Evaluation of the Insulation of Shielded Power Cable Systems Rated 5 kV and Above
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