IEEE 1184-2006 en Guide for Batteries for Uninterruptible Power Supply Systems《不间断电力系统用蓄电池》.pdf
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1、IEEE Std 1184-2006(Revision ofIEEE 1184-1994)IEEE Guide for Batteries forUninterruptible Power Supply SystemsI E E E3 Park Avenue New York, NY10016-5997, USA29 September 2006IEEE Power Engineering SocietySponsored by theStationary Battery CommitteeRecognized as anAmerican National Standard (ANSI)IEE
2、E Std 1184-2006(R2011)(Revision ofIEEE 1184-1994)IEEE Guide for Batteries for Uninterruptible Power Supply SystemsSponsor Stationary Battery Committeeof theIEEE Power Engineering SocietyApproved 11 September 2006American National Standards InstituteApproved 30 March 2006Reaffirmed 7 December 2011IEE
3、E SA-Standards BoardThe Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 2006 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserved. Published 29 September 2006. Printed in the United States of America.Second prin
4、ting 22 February 2007. Equation 5 was corrected and cross references were correted on pages 20, 22, and34.IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions ofany individual standard for educational classroom use can also be obtained through the Copyr
5、ight ClearanceCenter.ivCopyright 2006 IEEE. All rights reserved.IntroductionOur societys increasing dependence on computerized information has resulted in the expanded use ofuninterruptible power systems (UPS) to ensure the integrity of essential power systems. These systemsrequire that stored energ
6、y be available to maintain operation. Although rotating inertia has at times beenused to store this energy, batteries remain the preferred method of energy storage for this purpose. An arrayof battery designs and extensive technologies are available to the user. This guide is intended to inform the
7、user of the various battery technologies available and some of the designpoints to be considered when selecting a battery for UPS applications. Some of the battery design optionsthat result in volumetric efficiency may also result in reduced life. This guide can help the user to becomeaware of which
8、 designs and operating procedures can result in optimum battery life. This guide is intendedto be used along with IEEE Std 485, IEEE Recommended Practice for Sizing Lead-Acid Batteries forStationary Applications; IEEE Std 484, IEEE Recommended Practice for Installation Design andInstallation of Vent
9、ed Lead-Acid Batteries for Stationary Applications; IEEE Std 450, IEEERecommended Practice for Maintenance, Testing, and Replacement of Vented Lead-Acid Batteries forStationary Applications; and IEEE Std 1106, IEEE Recommended Practice for Installation, Maintenance,Testing, and Replacement of Vented
10、 Nickel-Cadmium Batteries for Stationary Applications. Notice to usersErrataErrata, 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 forerrata periodically.Interpreta
11、tionsCurrent interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp/index.html.PatentsAttention is called to the possibility that implementation of this standard may require use of subject mattercovered by patent rights. By publication of this standard, no
12、 position is taken with respect to the existence orvalidity of any patent rights in connection therewith. The IEEE shall not be responsible for identifyingpatents or patent applications for which a license may be required to implement an IEEE standard or forconducting inquiries into the legal validi
13、ty or scope of those patents that are brought to its attention.This introduction is not part of IEEE Std 1184-2006, IEEE Guide for Batteries for Uninterruptible Power SupplySystems.vCopyright 2006 IEEE. All rights reservedParticipantsAt the time this guide was completed, the Uninterruptible Power Su
14、pply (UPS) System working group hadthe following membership:Bansi R. Patel, ChairThe following members of the individual balloting committee voted on this standard. Balloters may havevoted for approval, disapproval, or abstention. When the IEEE-SA Standards Board approved this guide on 30 March 2006
15、, it had the followingmembership:Steve M. Mills, ChairRichard H. Hulett, Vice ChairDon Wright, Past ChairJudith Gorman, Secretary*Member EmeritusCurtis Ashton Gary Balash Robert Beavers Richard T. Bolgeo William Cantor Jay Chamberlin Bart Cotton Thomas G. Croda Pete DeMar Richard Greco Roger Johnson
16、 Wayne Johnson John KoperaJose A. Marrero Stephen McCluerJim McDowallEd Rafter Omi Samanta Robert J. Schmitt M. A. (Sam) Shah H. F. (Hal) Taylor Richard Tressler Lesley Varga Al WilliamsonSamuel AguirreJames AndersonCurtis AshtonGary BalashRobert BeaversRichard T. BolgeoWilliam CantorGarth CoreyStep
17、hen DareMatthew DavisJerry DiSciulloNeal DowlingJames EdmondsGary EngmannHarold EpsteinTrilok GargJerry GoerzRichard GrecoRandall GrovesJoseph JancauskasAlan JensenJose A. MarreroStephen McCluerJim McDowallG. MichelBansi R. PatelEdward RafterRobert RobinsonCharles RogersSteven SanoRobert SeitzEdward
18、 StallingsJames StonerH. F. (Hal) TaylorRichard TresslerLesley VargaJames WilsonEdward WirthDonald W. ZipseAhmed ZobaaMark D. BowmanDennis B. BrophyWilliam R. GoldbachArnold M. GreenspanRobert M. GrowJoanna N. GueninJulian Forster*Mark S. HalpinKenneth S. HanusWilliam B. HopfJoseph L. Koepfinger*Dav
19、id J. LawDaleep C. MohlaT. W. OlsenGlenn ParsonsRonald C. PetersenTom A. PrevostGreg RattaRobby RobsonAnne-Marie SahazizianVirginia C. SulzbergerMalcolm V. ThadenRichard L. TownsendWalter WeigelHowad L. WolfmanviCopyright 2006 IEEE. All rights reserved.Also included are the following nonvoting IEEE-
20、SA Standards Board liaisons:Satish K. Aggarwal, NRC RepresentativeRichard DeBlasio, DOE RepresentativeAlan H. Cookson, NIST RepresentativeMichelle D. TurnerIEEE Standards Program Manager, Document DevelopmentAngela OrtizIEEE Standards Program Manager, Technical Program DevelopmentCopyright 2006 IEEE
21、. All rights reserved. viiCONTENTS 1. Overview 1 1.1 Scope . 1 1.2 Purpose 1 2. Normative references 2 3. Definitions 2 4. Battery types. 3 4.1 General 3 4.2 Performance considerations. 4 4.3 Vented lead-acid (VLA) batteries 4 4.4 Valve-regulated lead-acid (VRLA) batteries. 4 4.5 Vented Ni-Cd batter
22、ies 6 4.6 Sealed Ni-Cd batteries . 7 5. Selection considerations . 7 5.1 Design considerations 7 5.2 Battery footprint and floor loading 8 5.3 Battery life. 8 5.4 Ventilation . 9 6. Application considerations . 11 6.1 Installation design 11 6.2 UPS operating consideration . 13 6.3 Warranty considera
23、tions 14 7. Battery sizing 15 7.1 Voltage window design . 15 7.2 Temperature. 15 7.3 Design and aging considerations . 17 7.4 Battery sizing calculations. 17 7.5 Sample application: three-phase UPS 18 8. Commissioning. 23 8.1 Design adherence. 23 8.2 Installation adherence 23 8.3 Performance adheren
24、ce 23 9. Maintenance and testing . 23 9.1 General 23 9.2 Safety. 24 9.3 Maintenance of lead-acid batteries 25 9.4 Maintenance requirements Ni-Cd. 29 Copyright 2006 IEEE. All rights reserved. viii9.5 Testing . 31 9.6 Data analysis 33 9.7 Record retention 36 Annex A (informative) Bibliography . 37 Ann
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