IEEE C37 20 7-2007 en Guide for Testing Metal-Enclosed Switchgear Rated Up to 38 kV for Internal Arcing Faults《内部电弧故障用压力等级小于38kV的金属外壳开关装置的测试用指南》.pdf
《IEEE C37 20 7-2007 en Guide for Testing Metal-Enclosed Switchgear Rated Up to 38 kV for Internal Arcing Faults《内部电弧故障用压力等级小于38kV的金属外壳开关装置的测试用指南》.pdf》由会员分享,可在线阅读,更多相关《IEEE C37 20 7-2007 en Guide for Testing Metal-Enclosed Switchgear Rated Up to 38 kV for Internal Arcing Faults《内部电弧故障用压力等级小于38kV的金属外壳开关装置的测试用指南》.pdf(47页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std C37.20.7-2007(Revision ofIEEE Std C37.20.7-2001)IEEE Guide for Testing Metal-EnclosedSwitchgear Rated Up to 38 kV forInternal Arcing FaultsIEEE3 Park Avenue New York, NY 10016-5997, USA18 January 2008IEEE Power Engineering SocietySponsored by theSwitchgear CommitteeC37.20.7IEEE Std C37.20.7
2、TM-2007 (Revision of IEEE Std C37.20.7-2001) IEEE Guide for Testing Metal-Enclosed Switchgear Rated Up to 38 kV for Internal Arcing Faults Sponsor Switchgear Committee of the IEEE Power Engineering Society Approved 27 September 2007 IEEE-SA Standards Board Abstract: A procedure for testing and evalu
3、ating the performance of metal-enclosed switchgear for internal arcing faults is covered. A method of identifying the capabilities of this equipment is given. Service conditions, installation, and application of equipment are also discussed. Keywords: accessibility, arc, bus, compartment, internal a
4、rcing fault, metal-clad switchgear, metal-enclosed interrupter switchgear, metal-enclosed low-voltage power circuit breaker switchgear, metal-enclosed switchgear, overpressure, protection The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyrigh
5、t 2008 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 18 January 2008. Printed in the United States of America. Second Printing 16 April 2008. Corrections to 5.2.4. Errata information can be obtained at http:standards.ieee.org/reading/ieee/updates/errar
6、a/index.html. 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. iv Copyright 2008 IEEE. All rights reserved. Introduction This intro
7、duction is not part of IEEE Std C37.20.7-2007, IEEE Guide for Testing Metal-Enclosed Switchgear Rated Up to 38 kV for Internal Arcing Faults. The standards and guides in the IEEE C37TMseries have been developed over a period of many years through the cooperative efforts of users, specifiers, manufac
8、turers, and other interested parties. This edition of IEEE Std C37.20.7 includes a detailed application guide and improvements in the testing procedure. The development of this guide rests heavily on Annex AA of IEC 298-1981a1and Amendment 1: 1994. This revision is harmonized with the IEC and incorp
9、orates many of the refinements made to the original IEC 298, as contained in the current IEC 62271-200 edition. This revision reflects lessons learned from use of the previous 2001 version. This revision also extends the scope to include testing of low-voltage metal-enclosed power circuit breaker sw
10、itchgear. In the 1970s, principally in Europe, interest in evaluating electrical equipment under conditions of internal arcing emerged. As a result, a draft Annex AA to IEC 298 “A.C. Metal-Enclosed Switchgear and Controlgear for Rated Voltages Above 1kV and Up to and Including 52kV” was issued by th
11、e IEC in 1981 and revised in 1990. It was redesignated IEC 62271-200 and revised in 2003. Subsequent to the creation of IEC 298, IEC subcommittee 17D issued Technical Report IEC/TR 1641 in 1996 (now redesignated as IEC/TR 61641) entitled “Enclosed Low-Voltage Switchgear and Controlgear AssembliesGui
12、de for Testing Under Conditions of Arcing Due to Internal Fault.” Knowledge of the arc resistance testing guide in IEC 298 spread to North America, and it was used as the basis for EEMAC G14-1, 1987, “Procedure for Testing the Resistance of Metal Clad Switchgear Under Conditions of Arcing Due to an
13、Internal Fault.” EEMAC G14-1 incorporated improvements in knowledge and understanding in over a decade of use of Annex AA of IEC 298 in Europe. Failure within a switchgear assembly, whether from a defect, an unusual service condition, lack of maintenance, or misoperation, may initiate an internal ar
14、c. There is little likelihood of an internal arc in equipment meeting the requirements of IEEE Std C37.20.1TM-2002,b ,2IEEE Std C37.20.2TM-1999, or IEEE Std C37.20.3TM-2001. There is even less likelihood of an internal arc in equipment that has insulated bus, compartmentalization, barriers, and inte
15、rlocks, such as those described in IEEE Std C37.20.2-1999; however, the possibility cannot be disregarded completely. The intent of this guide is to address the testing procedure for internal arcing faults in metal-enclosed switchgear. Even when arc-resistant construction is specified, it is strongl
16、y recommended that supplemental power system protection be provided. This supplemental protection should limit the total energy that can be delivered in the event of internal arcing faults. This protection can be provided in a variety of ways, depending on the nature of the system. Among the forms o
17、f protection that may be appropriate are current-limiting fuses, current-limiting circuit breakers, zone differential or bus differential relaying, ground differential protection, or arc-sensing systems sensitive to light or pressure effects that accompany internal arcing faults. The objective of su
18、ch protection must be to cause the interruption of all sources of power to the arcing fault in a time interval that is shorter than the rated arcing duration capability demonstrated by the tests contained within this document (refer to 4.3). aIEC publications are available from the Sales Department
19、of the International Electrotechnical Commission, Case Postale 131, 3, rue de Varemb, CH-1211, Genve 20, Switzerland/Suisse (http:/www.iec.ch/). IEC publications are also available in the United States from the Sales Department, American National Standards Institute, 11 West 42nd Street, 13th Floor,
20、 New York, NY 10036, USA.bIEEE publications are available from the Institute of Electrical and Electronics Engineers, 445 Hoes Lane, Piscataway, NJ 08854, USA (http:/standards/ieee.org/). v Copyright 2008 IEEE. All rights reserved. In addition to supplemental power system protection, adequate person
21、al protective equipment is required, as all hazards associated with an internal arcing fault are not eliminated when equipment tested to this guide is used. 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
22、/ieee/updates/errata/index.html. Users are encouraged to check this URL for errata periodically. 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
23、of this standard may require use of subject matter covered by patent rights. By publication of this standard, no position is taken with respect to the existence or validity of any patent rights in connection therewith. The IEEE is not responsible for identifying Essential Patent Claims for which a l
24、icense may be required, for conducting inquiries into the legal validity or scope of Patents Claims or determining whether any licensing terms or conditions are reasonable or non-discriminatory. Further information may be obtained from the IEEE Standards Association. Participants At the time this gu
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