IEEE C93 3-1995 en Requirements for Power-Line Carrier Carrier Traps《电力线载波线路限波器的美国国家标准要求》.pdf
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1、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. Printed in the United States of America.IEEE is a registered trademark in the U.S. Patent their exis
2、tence does not in any respect preclude anyone, whether he has approved the standards or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the standards. The American National Standards Institute does not develop standards and will in no cir
3、cumstances give an interpretation of any American National Standard. Moreover, no person shall have the right or authority to issue an interpretation of an American National Standard in the name of the American National Standards Institute. Requests for interpretations shall be addressed to the secr
4、etariat or sponsor whose name appears on the title page of this standard. CAUTION NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken to reaffirm, revise, or withdraw this standard n
5、o later than fwe years from the date of approval. Purchasers of American National Standards may receive current information on all standards by calling or writing the American National Standards Institute. Published by National Electrical Manufacturers Association 1300 N. 17th Street, Rosslyn, Virgi
6、nia 22209 Copyright O 1996 National Electrical Manufacturers Association All rights reserved. No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without prior written permission of the publisher. Printed in the United States of America COPYRIGH
7、T National Electrical Manufacturers AssociationLicensed by Information Handling Services STD-NEMA C93.3-ENGL 1995 b1i7U247 0514723 3b1 ANSI C93.3-1995 CONTENTS 1 2 3 4 5 6 7 Annex A . Appex B . Page Scope . 1 Normative references 1 Definitions . 1 Service conditions 3 Ratings . 5 Manufacturing requi
8、rements 19 Measurement of losses at power frequency 22 Testing . 9 Guide for emergency overload current capability of line traps 21 Annex C . Terminal orientation . 23 i COPYRIGHT National Electrical Manufacturers AssociationLicensed by Information Handling ServicesANSI C93.3-1995 Foreword (This For
9、eword is not patt of American National Standard C93.3-1995) This document was developed by Standards Committee C93, on Power-Line Carrier Equipment and Coupling Capacitor Voltage Transformers. During its development the standard received the benefits of a consensus of input from a balanced group rep
10、resenting the consumer, producer, and general-interest viewpoints. These inputs were harmonized and integrated into the standard in its present approved form. Standards Committee C93 was established to coordinate, review, and update the existing documents into an effective group of American National
11、 Standards, including this standard for line traps. A Separate standard will be developed to cover each type of equipment described in the Committees scope. This standard includes technical definitions, performance ratings, testing methods and manufacturing requirements for line traps. It is related
12、 to ANSI C93.1-1990, ANSI C93.4-1990. Suggestions for improvement of this standard are welcome. They should be sent to: Secretary, ANS C93, Power-Line Carrier National Electrical Manufacturers Association 1300 N. 17th Street, Suite 1847 Rosslyn, Virginia 22209 This standard was processed and approve
13、d for submission to ANSI by Accredited Standards Committee C93 on Power-Line Carrier Equipment and Coupling Gapacitor Voltage Transformers. Committee approval of this standard does not necessarily imply that all committee members voted for its approval. At the time it approved this standard, the C93
14、 Committee had the following members: W. Seamon, Chairman M. Holsinger, Secretary Organkation Represented Edison Electric Institute Institute of Electrical for further information refer to Appendix A2. 5.1.4 Main coil inductance The rated inductance of the main coil in mH shall be one of the followi
15、ng: 0.265, 0.53, 1.06, 1.59,2.12, 2.65. Other ratings of inductance may be specified based on agreement between manufacturer and purchaser. Note-For reference, the following nominal 60-Hz reactance values, in ohms, are given corresponding to the above rated inductances as 0.1,0.2,0.4,0.6,0.8,1.0, re
16、spectively. 5 COPYRIGHT National Electrical Manufacturers AssociationLicensed by Information Handling Services, STD-NEMA C73.3-ENGL I1775 b470247 0514730 5TL W ANSI C93.3-1995 Insulation Temperature Index 105 130 155 5.1.5 Temperature rise at rated continuous current Maximum Temperature Rise (Degree
17、s Celsius) Hottest Spot Average Winding (by Thermocouple) (by Resistance) 85 65 110 90 135 115 Since a line trap is usually not fully loaded during all its working life, the values given in table 6 are higher than those given in dry-type reactor publications. For special and non-conventional install
18、ations, appropriate units must be requested. Insulation Temperature Index 105 130 155 The maximum temperature rise above the 40C 24-hour mean ambient temperature at rated continuous current shall not exceed those values in table 6. Actual Limiting Temperature (Degrees Celsius) 205 285 31 5 180 I 160
19、 I 140 I 5.1.6 The line trap shall withstand the heating effects of the rated short-time current for two seconds without exceeding the temperature given in table 7, and as determined in accordance with 6.2.3. Other short-time current durations may be specified based on agreement between manufacturer
20、 and purchaser. Limiting temperature for rated short time current Table 7 - Limiting temperature for rated short-time current 5.1.7 Mechanical strength for rated short-time current The line trap shall be capable of withstanding the mechanical forces produced by an offset current having a single peak
21、 with a value of 2.55 times the rated short-time current. The term “capable of withstanding“ shall be interpreted to mean that if subjected to this duty the line trap shall show no damage and shall be capable of meeting all other requirements of this standard. 5.1.8 Protective device voltage rating
22、The voltage rating of the protective device shall be no less than “E,“ the voltage developed across the line trap with rated short-time current, determined as follows: E = 1.1 x 2%fLp IKN Where: f = power frequency (hertz) I, = apparent power-frequency inductance (henries) of the main coil I, = rate
23、d short-time current (amperes) 6 COPYRIGHT National Electrical Manufacturers AssociationLicensed by Information Handling ServicesSTD-NEMA C93.3-ENGL 1775 b470247 053i733 i38 111 ANSI C93.3-1995 System Voltage (kv The protective device shall meet the requirements of ANSIAEEE C62.11 for its classifica
24、tion and voltage rating. Radio-lnf luence Maximum Radio- 5.1.9 Main coil insulation level The insulation level for the main coil shall be at least 30% above the value of the maximum 200kV/microsecond front-of-wave protective voltage or of the 20 kA discharge voltage of the protective device, whichev
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