IEEE C62 21 CORR 1-2008 en Guide for the Application of Surge Voltage Protective Equipment on AC Rotating Machinery 1000 V and Greater Corrigendum 1 Correct Tab.pdf
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1、IEEE Std C62.21-2003/Cor 1-2008(Corrigendum to IEEE Std C62.21-2003)IEEE Guide for the Application of Surge Voltage Protective Equipmenton AC Rotating Machinery 1000 V and Greater Corrigendum 1: Correct Table 2, A.1,and A.2IEEE3 Park Avenue New York, NY 10016-5997, USA26 November 2008IEEE Power +1 9
2、78 750 8400. Permission to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. Introduction This introduction is not part of IEEE Std C62.21-2003/Cor 1-2008, IEEE Guide for the Application of Surge Voltage Protectiv
3、e Equipment on AC Rotating Machinery 1000 V and GreaterCorrigendum 1: Correct Table 2, A.1, and A.2. This guide started with the publishing of an IEEE Transactions paper in 1981 by a Working Group of the Rotating Machinery Committee. That paper, “Impulse Voltage Strength of AC Rotating Machines,” ma
4、de a significant contribution to the ease of protecting electric utility rotating machines from surges. The paper indicated that ac machines could be expected to withstand surge fronts of 5 s with magnitude equal to the crest of the factory test voltage, and could withstand surge fronts as short as
5、200 ns with magnitude equal to two times crest line-to-ground rated voltage. At that time, ac machine manufacturers were usually recommending that large motors be surge protected on the grounds that protection was cheap and failure was costly. It was recognized that most of the knowledge was with th
6、e manufacturers, not the users. There was little measured data on the actual surge environment experienced by machines, nor was there measured data of actual withstand voltage or voltage to breakdown of machines in service. In addition, a survey of several thousand motors in industrial service showe
7、d that few were equipped with surge protection, and there was almost no evidence of failure due to absence of surge protection. A survey by WG3.4.9 of the Surge Protective Devices Committee found (from a small sample of utility installations) that surge protective capacitors were failing at about th
8、e same rate as those motor insulation failures that were not caused by overheating. It was also recognized that capacitor leads as usually installed, and even when of quite short lengths, have sufficient inductance to prevent the capacitor from protecting the machine from steep-front surges. Motor s
9、tarting surge fronts as short as 200 ns had been measured. At the instigation of an Edison Electric Institute committee and with electric utility support, the Electric Power Research Institute (EPRI) undertook a research program to investigate the surge environment being experienced by ac rotating m
10、achines, and machine surge withstand strength. The effort was directed to understand and be able to predict whether a particular machine was at risk. Both motors and generators were investigated. Particular attention was given to the problem of steep-front surges produced by full-voltage starting of
11、 motors (across-the-line). Much of the field and analytical work was contracted by EPRI to Ontario Hydro. By courtesy of EPRI and Ontario Hydro, and at their expense, IEEE Transactions papers were prepared to make the substance of their research generally available to the electric power industry and
12、 for preparation of IEEE guides. Concurrent with the EPRI/Ontario Hydro work, the National Electrical Manufacturers Association (NEMA), the International Electrotechnical Commission (IEC), and the IEEE have developed factory surge test standards for some ac machines. This corrigendum makes two corre
13、ctions to the keywords currently found in the frontmatter of IEEE Std C62.21-2003 by changing groundwall installation to groundwall insulation and changing turn installation to turn insulation. This corrigendum also corrects Table 2 found in 5.3.4 by correcting the K value for Y grounded primary to
14、Delta secondary connection; and by clarifying the ambiguity in Y ungrounded primary to Y grounded and Y ungrounded secondary connections. In A.1 of Annex A, errors in Equation (A.3) and Equation (A.6) are corrected. In A.2 of Annex A, errors and units in Equation (A.7), Equation (A.8), and Equation
15、(A.9) have been corrected; the example calculations for surge voltage magnitude and front duration at the motor terminal have been corrected; and the word as, where defined in the text as the attenuation factor for semi-conductive layer loss, has been corrected to the variable s. The corrections to
16、A.1 and A.2 in Annex A are detailed individually; afterwards, the changes are incorporated into what appears as a corrected version of these two clauses. iv Copyright 2008 IEEE. All rights reserved. Notice to users Laws and regulations Users of these documents should consult all applicable laws and
17、regulations. Compliance with the provisions of this standard does not imply compliance to any applicable regulatory requirements. Implementers of the standard are responsible for observing or referring to the applicable regulatory requirements. IEEE does not, by the publication of its standards, int
18、end to urge action that is not in compliance with applicable laws, and these documents may not be construed as doing so. Copyrights This document is copyrighted by the IEEE. It is made available for a wide variety of both public and private uses. These include both use, by reference, in laws and reg
19、ulations, and use in private self-regulation, standardization, and the promotion of engineering practices and methods. By making this document available for use and adoption by public authorities and private users, the IEEE does not waive any rights in copyright to this document. Updating of IEEE do
20、cuments Users of IEEE standards should be aware that these documents may be superseded at any time by the issuance of new editions or may be amended from time to time through the issuance of amendments, corrigenda, or errata. An official IEEE document at any point in time consists of the current edi
21、tion of the document together with any amendments, corrigenda, or errata then in effect. In order to determine whether a given document is the current edition and whether it has been amended through the issuance of amendments, corrigenda, or errata, visit the IEEE Standards Association web site at h
22、ttp:/ieeexplore.ieee.org/xpl/standards.jsp, or contact the IEEE at the address listed previously. For more information about the IEEE Standards Association or the IEEE standards development process, visit the IEEE-SA web site at http:/standards.ieee.org. Errata Errata, if any, for this and all other
23、 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 periodically. Interpretations Current interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp
24、/ index.html. Patents Attention is called to the possibility that implementation of this corrigendum may require use of subject matter covered by patent rights. By publication of this corrigendum, no position is taken with respect to the v Copyright 2008 IEEE. All rights reserved. vi Copyright 2008
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