IEEE 1234-2007 en Guide for Fault-Locating Techniques on Shielded Power Cable Systems《屏蔽电力电缆系统故障定位技术指南》.pdf
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1、IEEE Std 1234-2007IEEE Guide for Fault-Locating Techniques on Shielded Power Cable SystemsIEEE3 Park Avenue New York, NY 10016-5997, USA16 November 2007IEEE Power Engineering SocietySponsored by theInsulated Conductors Committee1234TMIEEE Std 1234-2007 IEEE Guide for Fault-Locating Techniques on Shi
2、elded Power Cable Systems Sponsor Insulated Conductors Committee of the IEEE Power Engineering Society Approved 17 May 2007 IEEE-SA Standards Board Abstract: Tests and measurements that are performed on shielded power cables to identify the location of a fault are described. Whenever possible, the l
3、imitations of a particular test and measurement to locate a fault are provided and recommendations are made regarding specialized fault-locating techniques. A fault characterization chart is included as an aid to select a fault-locating technique. Keywords: arc reflection, cable fault locating, cabl
4、e testing, grounding, safety, sectionalizing, thumping, time domain reflectometry (TDR) _ The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2007 by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Publish
5、ed 16 November 2007. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. Introduction This in
6、troduction is not part of IEEE Std 1234-2007, IEEE Guide for Fault-Locating Techniques on Shielded Power Cable Systems Many fault-locator personnel are experienced in locating short and open circuits on shielded power cables. Proper locating of high-resistance or intermittent cable faults, which are
7、 the majority of the faults on cables with extruded dielectric insulation, is considered tedious, inconsistent, and time-consuming. Therefore, re-closing, re-fusing, burning, and thumping at unnecessarily high voltage and energy levels, in order to generate an open or short circuit, are frequently u
8、sed without consideration of cable and equipment properties. The danger of activating dormant faults, generating new faults, or damaging utility and customer equipment by improper locating methods is not always recognized. By establishing cable fault-locating guidelines and training programs that in
9、corporate recommended cable fault-locating measurements and techniques, cable owners can realize substantial savings in manpower and cable and equipment replacement, and minimize losses from customer outages. Some information and figures in Clause 4, Clause 5, Clause 6, and Annex B, Annex C, and Ann
10、ex D are copyrighted by Gnerlich, Inc. and used with permission. Notice to users Errata Errata, if any, for this and all other standards can be accessed at the following URL: http:/ standards.ieee.org/reading/ieee/updates/errata/index.html. Users are encouraged to check this URL for errata periodica
11、lly. Interpretations Current interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp/ index.html. Patents Attention is called to the possibility that implementation of this guide may require use of subject matter covered by patent rights. By publication of
12、this guide, no position is taken with respect to the existence or validity of any patent rights in connection therewith. The IEEE shall not be responsible for identifying patents or patent applications for which a license may be required to implement an IEEE standard or for conducting inquiries into
13、 the legal validity or scope of those patents that are brought to its attention. iv Copyright 2007 IEEE. All rights reserved. Participants At the time this guide was submitted to the IEEE-SA Standards Board for approval, the C3TF1 Working Group had the following membership: Hans R. Gnerlich, Chair W
14、olfgang B. Haverkamp, Vice Chair Ted. A. Balaska Earle C. Bascom Vern Buchholz Tom C. Champion Jack E. Cherry Frank DiGuglielmo Bill Larzelere Matthew S. Mashikian James D. Medek Dale T. Metzinger John T. Nierenberg John S. Rector Ewell T. Robeson Lawrence W. Salberg Nagu N. Srinivas Gordon W. Whitt
15、en T. Shayne Wright deceased The following members of the individual balloting committee voted on this guide. Balloters may have voted for approval, disapproval, or abstention. James Fitzgerald Arthur R. Fitzpatrick Marcel Fortin Robert B. Gear Hans R. Gnerlich Richard L. Harp Wolfgang B. Haverkamp
16、Stanley V. Heyer Lauri Hiivala Richard A. Huber Lawrence J. Kelly Albert Kong Carl Landinger Gabor Ludasi Gregory Luri Glenn Luzzi Matthew S. Mashikian Spiro G. Mastoras L. Bruce McClung J. D. Medek John E. Merando Jr Gary L. Michel Daleep C. Mohla Shantanu Nandi James J. Pachot Arthur V. Pack Jr Ne
17、al K. Parker Gary Polhill Dennis C. Pratt Radhakrishna V. Rebbapragada Robert A. Resuali Joseph H. Snow Nagu N. Srinivas Frank Stepniak John Tanaka William A. Thue Stephen E. Turner Gerald L. Vaughn Donald A. Voltz Daniel J. Ward Carl Wentzel William D. Wilkens Joe Zimnoch When the IEEE-SA Standards
18、 Board approved this Standard on 17 May 2007, it had the following membership: Steve M. Mills, Chair Robert M. Grow, Vice Chair Don F. Wright, Past Chair Judith Gorman, Secretary Richard DeBlasio Alexander D. Gelman William R. Goldbach Arnold M. Greenspan Joanna N. Guenin Julian Forster* Kenneth S.
19、Hanus William B. Hopf Richard H. Hulett Hermann Koch Joseph L. Koepfinger* John D. Kulick David J. Law Glenn Parsons Ronald C. Petersen Tom A. Prevost Narayanan Ramachandran Greg Ratta Robby Robson Anne-Marie Sahazizian Virginia C. Sulzberger Malcolm V. Thaden Richard L. Townsend Howard L. Wolfman *
20、Member Emeritus v Copyright 2007 IEEE. All rights reserved. Also included are the following nonvoting IEEE-SA Standards Board liaisons: Satish K. Aggarwal, NRC Representative Alan H. Cookson, NIST Representative Lorraine Patsco IEEE Standards Program Manager, Document Development Matthew J. Ceglia I
21、EEE Standards Program Manager, Technical Program Development vi Copyright 2007 IEEE. All rights reserved. Contents 1. Overview 1 1.1 General 1 1.2 Scope . 1 1.3 Purpose 1 2. Normative references 1 3. Definitions, acronyms, and abbreviations 2 3.1 Definitions . 2 3.2 Acronyms and abbreviations . 3 4.
22、 Safety 4 4.1 Safety practices 4 4.2 Responsibility 4 4.3 Precautions 5 4.4 Grounding 5 5. Cable system fault characteristics. 6 5.1 Radial distribution . 6 5.2 Network distribution 8 5.3 Cable system faults 9 6. Cable system fault locating. 10 6.1 Fault-locating preferences chart. 10 6.2 Sectionali
23、zing 11 6.3 Insulation Resistance . 12 6.4 Time domain reflectometry . 13 6.5 Capacitive discharge (thumping). 14 6.6 Burning (fault conditioning) 14 6.7 Surge arc reflection 15 6.8 Burn arc reflection. 16 6.9 Surge pulse reflection 16 6.10 Decay method 17 6.11 Bridge techniques 17 6.12 Tracing/loca
24、ting/pinpointing . 18 Annex A (informative) Bibliography . 21 Annex B (informative) First response cable system fault location in URD . 22 Annex C (informative) Fault location in network feeders 24 C.1 Fault tracing 24 C.2 TDR Assisted fault location 24 Annex D (informative) Fault location on cable
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