IEEE C37 235-2007 en Guide for the Application of Rogowski Coils Used for Protective Relaying Purposes《保护继电器用茹科夫斯基线圈的应用指南 n n》.pdf
《IEEE C37 235-2007 en Guide for the Application of Rogowski Coils Used for Protective Relaying Purposes《保护继电器用茹科夫斯基线圈的应用指南 n n》.pdf》由会员分享,可在线阅读,更多相关《IEEE C37 235-2007 en Guide for the Application of Rogowski Coils Used for Protective Relaying Purposes《保护继电器用茹科夫斯基线圈的应用指南 n n》.pdf(55页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std C37.235-2007IEEE Guide for the Application ofRogowski Coils Used for ProtectiveRelaying PurposesIEEE3 Park Avenue New York, NY 10016-5997, USA22 February 2008IEEE Power Engineering SocietySponsored by thePower System Relaying CommitteeC37.235TMIEEE Std C37.235TM-2007 IEEE Guide for the Appl
2、ication of Rogowski Coils Used for Protective Relaying Purposes Sponsor Power System Relaying Committee of the IEEE Power Engineering Society Approved 27 September 2007 IEEE-SA Standards Board Abstract: This guide establishes criteria and requirements for application of Rogowski coils (RCs) (air-cor
3、e current sensors) used for protective relaying in electric power systems. The selection and application of RCs for the more common protection schemes are addressed. Keywords: current sensor, current transformer, relay protection, Rogowski coil The Institute of Electrical and Electronics Engineers,
4、Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2008 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 22 February 2008. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to ph
5、otocopy 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 introduction is not part of IEEE Std C37.235-2007, IEEE Guide for the Application of Rogowski Coils Us
6、ed for Protective Relaying Purposes. Conventional iron-core current transformers (CTs) have traditionally been used for protection and measurement applications in part because of their ability to produce the high-power output required by electromechanical equipment. Microprocessor-based devices cons
7、ume less power than traditional electromechanical equipment, thereby making high-power current sensors unnecessary. When conventional CTs are used with new microprocessor-based relays, commonly recognized CT problems such as saturation and remanence can affect the relay performance in a similar way
8、as with traditional schemes. Manufacturers use different algorithms to achieve proper performance of relays during CT saturation. Rogowski coil current sensors have high measurement accuracy and are linear (do not saturate), providing a wide operating current range. Rogowski coils make protection sc
9、hemes possible that were not achievable by conventional CTs because of saturation, size, and weight. However, unlike CTs that produce secondary current proportional to the primary current, Rogowski coils produce output voltage that is a scaled time derivative di(t)/dt of the primary current. Signal
10、processing is required to extract the power frequency signal for phasor-based protective relays and microprocessor-based equipment designed to accept these type signals. This guide is the first one on this topic. It is intended to present the principle of operation of Rogowski coils and to compare p
11、erformance characteristics with other current sensing devices. This document includes guidelines for Rogowski coil installation, interface to relays, testing, and applications for different relay protection schemes. Notice to users Errata Errata, if any, for this and all other standards can be acces
12、sed at the following URL: http:/ standards.ieee.org/reading/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
13、Attention is called to the possibility that implementation 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 respon
14、sible for identifying Essential Patent Claims for which a license 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 I
15、EEE Standards Association. v Copyright 2008 IEEE. All rights reserved. Participants At the time this guide was submitted to the IEEE-SA Standards Board for approval, the Working Group for Rogowski Coils Used for Relaying Purposes had the following membership: Ljubomir A. Kojovic, Chair Veselin Skend
16、zic, Vice Chair Robert W. Beresh Jeff Burnworth Arvind K. S. Chaudhary Dennis Erickson Don Feltz Dale Finney James W. Ingleson Peter McLaren Brian P. Mugalian John D. Ramboz Mohindar Sachdev Don D. Sevcik Delbert D. Weers The following members of the balloting committee voted on this guide. Balloter
17、s may have voted for approval, disapproval, or abstention. William J. Ackerman Steven C. Alexanderson David Apps Ali Al Awazi G. J. Bartok Robert W. Beresh Wallace B. Binder William G. Bloethe Oscar E. Bolado Steven R. Brockschink Chris Brooks Michael G. Brown Gustavo A. Brunello Christoph Brunner T
18、homas P. Callsen Arvind K. S. Chaudhary Stephen P. Conrad Tommy P. Cooper James R. Cornelison Luis M. Coronado Randall L. Dotson Paul R. Drum Gary Engmann Marcel Fortin Fredric A. Friend Jeffrey G. Gilbert Keith I. Gray Stephen E. Grier Randall C. Groves Akit K. Gwal Roger A. Hedding Gary A. Heuston
19、 David A. Horvath R. Jackson Radek Javora Anders L. Johnson Gerald F. Johnson Lars E. Juhlin Peter J. Kemp Joseph L. Koepfinger Ljubomir A. Kojovic David W. Krause Jim Kulchisky Raluca E. Lascu Albert Livshitz William E. Lockley R. W. Long Frederico Lopez William G. Lowe Gregory Luri Michael J. Mcdo
20、nald Nigel P. McQuin Michael J. Meisinger Georges F. Montillet Charles Allan Morse Brian P. Mugalian Randolph Mullikin Jerry R. Murphy Bradley D. Nelson Michael S. Newman Donald M. Parker Kostas M. Pervolarakis Mark J. Peterson Iulian E. Profir Michael A. Roberts Charles W. Rogers Daniel M. Sauer Th
21、omas Schossig Robert J. Schuerger Lubomir H. Sevov Devki N. Sharma Charles W. Smith James E. Smith Joshua B. Smith John H. Spare David Stone James M. Swank Richard P. Taylor John A. Vergis James W. Wilson Richard C. Young Theodore C. Zeiss Ahmed F. Zobaa vi Copyright 2008 IEEE. All rights reserved.
22、When the IEEE-SA Standards Board approved this guide on 27 September 2007, it had the following membership: Steve M. Mills, Chair Robert M. Grow, Vice Chair Don Wright, Past Chair Judith Gorman, Secretary Richard DeBlasio Alex Gelman William R. Goldbach Arnold M. Greenspan Joanna N. Guenin Kenneth S
23、. Hanus William B. Hopf Richard H. Hulett Hermann Koch Joseph L. Koepfinger* John 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 *M
24、ember Emeritus Also included are the following nonvoting IEEE-SA Standards Board liaisons: Satish K. Aggarwal, NRC Representative Michael H. Kelley, NIST Representative Jennie Steinhagen IEEE Standards Program Manager, Document Development Matthew J. Ceglia IEEE Standards Program Manager, Technical
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