ANSI IEEE C62 21-2003 Guide for the Application of Surge Voltage Protective Equipment on AC Rotating Machinery 1000 V and Greater《1000 V及以上的交流旋转电机上浪涌电压保护设备的应用指南.pdf
《ANSI IEEE C62 21-2003 Guide for the Application of Surge Voltage Protective Equipment on AC Rotating Machinery 1000 V and Greater《1000 V及以上的交流旋转电机上浪涌电压保护设备的应用指南.pdf》由会员分享,可在线阅读,更多相关《ANSI IEEE C62 21-2003 Guide for the Application of Surge Voltage Protective Equipment on AC Rotating Machinery 1000 V and Greater《1000 V及以上的交流旋转电机上浪涌电压保护设备的应用指南.pdf(50页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std C62.21-2003IEEE StandardsC62.21TMIEEE Guide for the Application ofSurge Voltage Protective Equipmenton AC Rotating Machinery 1000 Vand GreaterPublished by The Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USA28 April 2004IEEE Power Engineerin
2、g SocietySponsored by theSurge Protective Devices CommitteeIEEE StandardsPrint: SH95200PDF: SS95200Authorized licensed use limited to: IEEE Standards Staff. Downloaded on March 23, 2009 at 15:44 from IEEE Xplore. Restrictions apply.Authorized licensed use limited to: IEEE Standards Staff. Downloaded
3、 on March 23, 2009 at 15:44 from IEEE Xplore. Restrictions apply.The Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 2004 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserved. Published 28 April 2004. Printed in
4、 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 educationalclassroom use can also be obtained through the Copyright Clearance Center.NOTEAttention is called to the possibility that implem
5、entation of this standard may require use of subjectmatter covered by patent rights. By publication of this standard, no position is taken with respect to the exist-ence or validity of any patent rights in connection therewith. The IEEE shall not be responsible for identifyingpatents for which a lic
6、ense may be required by an IEEE standard or for conducting inquiries into the legal valid-ity or scope of those patents that are brought to its attention.Authorized licensed use limited to: IEEE Standards Staff. Downloaded on March 23, 2009 at 15:44 from IEEE Xplore. Restrictions apply.Copyright 200
7、4 IEEE. All rights reserved.iiiIntroduction(This introduction is not part of IEEE Std C62.21-2003, IEEE Guide for the Application of Surge Voltage ProtectiveEquipment on AC Rotating Machinery 1000 V and Greater.)This guide started with the publishing of an IEEE transactions paper in 1981 by a Workin
8、g Group of theRotating Machinery Committee. That paper, “Impulse Voltage Strength of AC Rotating Machines,” made asignificant contribution to the ease of protecting electric utility rotating machines from surges. The paperindicated that ac machines could be expected to withstand surge fronts of five
9、 microseconds with magnitudeequal to the crest of the factory test voltage, and could withstand surge fronts as short as 200 nanosecondswith magnitude equal to two times crest line-to-ground rated voltage. At that time, ac machine manufactur-ers were usually recommending that large motors be surge p
10、rotected on the grounds that protection wascheap and failure was costly. It was recognized that most of the knowledge was with the manufacturers, notthe users. There was little measured data on the actual surge environment experienced by machines, nor wasthere measured data of actual withstand volta
11、ge or voltage to breakdown of machines in service. In addition,a survey of several thousand motors in industrial service showed that few were equipped with surge protec-tion, and there was almost no evidence of failure due to absence of surge protection. A survey by WG 3.4.9of Surge Protective Devic
12、es Committee found (from a small sample of utility installations) that surge protec-tive capacitors were failing at about the same rate as those motor insulation failures that were not caused byoverheating. It was also recognized that capacitor leads as usually installed, and even when of quite shor
13、tlengths, have sufficient inductance to prevent the capacitor from protecting the machine from steep-frontsurges. Motor starting surge fronts as short as 200 nanoseconds had been measured. At the instigation of an Edison Electric Institute committee and with electric utility support, the ElectricPow
14、er Research Institute (EPRI) undertook a research program to investigate the surge environment beingexperienced by ac rotating machines, and machine surge withstand strength. The effort was directed tounderstand and be able to predict whether a particular machine was at risk. Both motors and generat
15、orswere investigated. Particular attention was given to the problem of steep-front surges produced by full-volt-age starting of motors (across-the-line). Much of the field and analytical work was contracted by EPRI toOntario Hydro. By courtesy of EPRI and Ontario Hydro, and at their expense, IEEE tr
16、ansaction papers wereprepared to make the substance of their research generally available to the electric power industry and forpreparation of IEEE guides. Concurrent with the EPRI/Ontario Hydro work, the National Electrical Manufacturers Association(NEMA), the International Electrotechnical Commiss
17、ion (IEC), and the IEEE have developed factory surgetest standards for some ac machines.This guide is intended to aid engineers at all levels of surge protection knowledge in deciding whether par-ticular machines should have surge protection. The guide may be used in estimating the surge withstandca
18、pability and switching surge exposure of ac rotating machinery in usual, not extreme exposure,installations.Authorized licensed use limited to: IEEE Standards Staff. Downloaded on March 23, 2009 at 15:44 from IEEE Xplore. Restrictions apply.ivCopyright 2004 IEEE. All rights reserved.ParticipantsAt t
19、he time this guide was completed Working Group 3.4.9 of the PES Surge Protective Devices Committeehad the following membership:David W. Jackson,ChairAt the time this guide was completed, the PES Surge Protective Devices Committee had the followingmembership:J. J. Woodworth,ChairG. L. Goedde,Vice Cha
20、irD. Dorr,SecretaryThe following members of the balloting committee voted on this standard. Balloters may have voted forapproval, disapproval, or abstention. James J. BurkeE. Peter DickDan DunlapThomas FieldA. Bob HilemanRonald W. HotchkissE.W. KnappJoseph L. KoepfingerSubinoy MazumdarBert ParsonsTh
21、omas RozekKeith B. StumpEva J. TarasiewiczEdgar R. Taylor, Jr.Ron WellmanSteve G. WhisenantJeffrey S. WilliamsJames W. Wilson, Jr. C. ChrysanthouR. CohenM. G. ComberW. CurryD. C. DawsonM. deNigrisD. Dorr J. P. DuPontC. C. ErvenJ. FunkeE. GalloW. GoldbachA. HaaJ. HarrisonT. C. HartmanS. HensleyA. R.
22、HilemanV. HinrichsenD. HutchinsD. W. JacksonD. Jennings-ConnerB. JohnnerfeltP. JonesW. KappJ. L. KoepfingerB. Lee G. E. LeeD. W. Lenk (Past Chair)R. T. LeskovichC. LindquistE. H. Marrow, Jr.A. MartinF. D. MartzloffK. NolanR. OdenbergH. W. OertelJ. C. OsterhoutM. ParenteT. RozekH. SteinhoffK. B. Stum
23、pE. TarasiewiczE. R. TaylorR. ThallamD. TurnerD. UnterwegerA. VitolsR. WallingS. F. WatererJ. W. WilsonD. M. WordenBehdad BiglarMark BushnellJames CaseTommy CooperMike DarbyGuru Dutt DhingraRonald DaubertGary EngmannClifford ErvenThomas FieldErnie GalloWilliam GoldbachRandall GrovesBal GuptaJohn E.
24、HarderRaymond HillEdward Horgan Jr.Ronald HotchkissDavid JacksonJoseph L. KoepfingerStephen R. LambertGerald LeeBoyd LeuenbergerJason LinLisardo LouridoAl MaguireJesus MartinezMark McGranaghanNigel McQuinGary MichelAbdul MousaArun NarangCharles NgetheFredrick OKeefeJoe OsterhoutThomas RozekJames Rug
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