• IEEE DRAFT 519.1 : D9A 2004

    Withdrawn A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.

    GUIDE FOR APPLYING HARMONIC LIMITS ON POWER SYSTEMS

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    Withdrawn date:  22-07-2013

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    Published date:  12-01-2013

    Publisher:  Institute of Electrical & Electronics Engineers

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    Table of Contents - (Show below) - (Hide below)

    Introduction
    1. Overview
       1.1 Scope
    2. Background
       2.1 Basic responsibilities
       2.2 IEEE 519-1992 application concerns
       2.3 The harmonic limits
       2.4 Point of common coupling assumption
    3. General Procedure for Applying Harmonic Limits
       3.1 General evaluation procedure
       3.2 Evaluating the Time Varying Characteristics of Harmonics
       3.3 Measurement considerations
       3.4 Finding the source of harmonics
    4. Applying Harmonic Limits for Industrial Facilities
       4.1 Example case study
       4.2 Characteristics of most important load types
       4.3 Power factor correction considerations
       4.4 Filter considerations
       4.5 Voltage notching concerns
       4.6 Other harmonic producing loads
    5. Applying Harmonic Limits for Commercial Customers
       5.1 Important load types for commercial facilities
       5.2 Typical harmonic current levels for commercial buildings
       5.3 Example problems and solutions
    6. Applying harmonic limits for residential customers
       6.1 Harmonic characteristics of residential loads
       6.2 Examples of equipment harmonic limits
       6.3 Cancellation effects with dispersed sources of harmonics
       6.4 Examples of important load types
    7. Utility system considerations
       7.1 General considerations
       7.2 Using the harmonic distortion limits as a control measure
       7.3 Power system equipment application considerations
       7.4 Harmonic mitigation techniques
       7.5 Concern for triplen harmonic currents on distribution systems
       7.6 Economic considerations
       7.7 Other considerations
    Annex A (Informative) - Bibliography

    Abstract - (Show below) - (Hide below)

    Provides procedures for controlling harmonics on the power system along with recommended limits for customer harmonic injection and overall power system harmonic levels.

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    Comment Closes On
    Document Type Draft
    Publisher Institute of Electrical & Electronics Engineers
    Status Withdrawn

    Standards Referenced By This Book - (Show below) - (Hide below)

    IEEE 1531-2003 IEEE Guide for Application and Specification of Harmonic Filters

    Standards Referencing This Book - (Show below) - (Hide below)

    IEEE 519-2014 REDLINE IEEE Recommended Practice and Requirements for Harmonic Control in Electric Power Systems
    IEC 61000-3-12:2011 Electromagnetic compatibility (EMC) - Part 3-12: Limits - Limits for harmonic currents produced by equipment connected to public low-voltage systems with input current >16 A and ≤ 75 A per phase
    IEEE 1137-1991 IEEE Guide for the Implementation of Inductive Coordination Mitigation Techniques and Application
    IEC 61000-2-2:2002+AMD1:2017 CSV Electromagnetic compatibility (EMC) - Part 2-2: Environment - Compatibility levels for low-frequency conducted disturbances and signalling in public low-voltage power supply systems
    IEC 61000-4-7:2002+AMD1:2008 CSV Electromagnetic compatibility (EMC) - Part 4-7: Testing and measurement techniques - General guide on harmonics and interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto
    IEEE C57.110-2008 REDLINE IEEE Recommended Practice for Establishing Liquid-Filled and Dry-Type Power and Distribution Transformer Capability When Supplying Nonsinusoidal Load Currents
    IEEE 776-1992 IEEE Recommended Practice for Inductive Coordination of Electric Supply and Communication Lines
    IEC 61000-3-2 : 4.0 ELECTROMAGNETIC COMPATIBILITY (EMC) - PART 3-2: LIMITS - LIMITS FOR HARMONIC CURRENT EMISSIONS (EQUIPMENT INPUT CURRENT <= 16 A PER PHASE)
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