BS PD IEC TS 60871-3-2015 Shunt capacitors for AC power systems having a rated voltage above 1 000 V Protection of shunt capacitors and shunt capacitor banks《额定电压大于1000 V的.pdf
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1、BSI Standards Publication Shunt capacitors for AC power systems having a rated voltage above 1 000 V Part 3: Protection of shunt capacitors and shunt capacitor banks PD IEC/TS 60871-3:2015National foreword This Published Document is the UK implementation of IEC/TS 60871-3:2015. The UK participation
2、in its preparation was entrusted to Technical Committee PEL/33, Power capacitors. A list of organizations represented on this committee can be obtained on request to its secretary. This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its
3、correct application. The British Standards Institution 2015. Published by BSI Standards Limited 2015 ISBN 978 0 580 85306 7 ICS 29.240.99; 31.060.70 Compliance with a British Standard cannot confer immunity from legal obligations. This Published Document was published under the authority of the Stan
4、dards Policy and Strategy Committee on 31 July 2015. Amendments/corrigenda issued since publication Date Text affected PUBLISHED DOCUMENT PD IEC/TS 60871-3:2015 IEC TS 60871-3 Edition 2.0 2015-06 TECHNICAL SPECIFICATION Shunt capacitors for AC power systems having a rated voltage above 1 000 V Part
5、3: Protection of shunt capacitors and shunt capacitor banks INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.240.99; 31.060.70 ISBN 978-2-8322-2755-8 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distrib
6、utor. PD IEC/TS 60871-3:2015 2 IEC TS 60871-3:2015 IEC 2015 CONTENTS FOREWORD 5 1 Scope .7 2 Normative references 7 3 Terms and definitions 7 4 Internal fuses 7 4.1 General 7 4.2 Fuse characteristics 8 4.2.1 Rated current .8 4.2.2 Rated discharge capability .8 4.2.3 Disconnecting capability 8 4.2.4
7、Voltage withstand capability after operation 8 4.3 Influence of capacitor element configuration on capacitor life.8 4.3.1 Capacitor with all elements connected in parallel 8 4.3.2 Capacitor with elements connected in series and parallel .8 5 External fuses .8 5.1 General 8 5.2 Fuse characteristics 9
8、 5.2.1 Rated current .9 5.2.2 Rated voltage 9 5.2.3 Time-current characteristics .9 5.2.4 Discharge capability . 10 5.3 Fuse types 10 5.3.1 General . 10 5.3.2 Expulsion fuses . 10 5.3.3 Current-limiting fuses . 11 5.3.4 Combination current-limiting/expulsion fuses . 11 5.4 Influence of capacitor ban
9、k configuration on fuse selection 11 5.4.1 Single series section grounded star and delta banks 11 5.4.2 Single series section ungrounded star banks 11 5.4.3 Multiple series section banks . 11 5.5 Coordination with case rupture curves . 11 6 Unbalance detection 12 6.1 Operation 12 6.2 Types of unbala
10、nce protection . 12 6.2.1 Neutral current (Figure 3) . 12 6.2.2 Neutral voltage (Figure 4) 12 6.2.3 Current unbalance between neutrals (Figure 5) 13 6.2.4 Phase voltage unbalance (Figure 6) . 13 6.2.5 Voltage difference (Figure 7) 13 6.2.6 Current unbalance in bridge connection (Figure 8) . 13 6.3 C
11、urrent and voltage transformers 13 6.3.1 Current transformers 13 6.3.2 Voltage transformers 14 6.4 Relays and protection settings 14 6.5 Sensitivity . 14 6.6 Initial unbalance 15 PD IEC/TS 60871-3:2015IEC TS 60871-3:2015 IEC 2015 3 7 Overload current . 15 7.1 Operation 15 7.2 Protective arrangement
12、. 15 7.3 Current transformers . 15 7.4 Relays 15 7.5 Protective settings 16 8 Over and undervoltage 16 8.1 Operation 16 8.2 Overvoltage protection 16 8.3 Undervoltage protection 16 8.4 Reclosing 16 9 Other protection 17 9.1 Surge arresters . 17 9.1.1 General . 17 9.1.2 Operation 17 9.1.3 Lightning t
13、ransients 17 9.1.4 Switching transients . 17 9.1.5 Temporary overvoltages . 17 9.1.6 Rated voltage 17 9.1.7 Energy absorption 18 9.2 Damping devices 18 9.2.1 Capacitor switching 18 9.2.2 Inrush currents 18 9.2.3 Voltage transients 19 9.2.4 Ratings 19 9.3 Synchronized switching . 19 9.3.1 Operation 1
14、9 9.3.2 Breaker contacts delay. 19 10 Safety . 19 10.1 Discharging devices 19 10.1.1 General . 19 10.1.2 Internal resistors 20 10.1.3 External discharge devices 20 10.1.4 Discharging after disconnection . 20 10.2 Dead metallic parts . 20 Bibliography . 25 Figure 1 Fuse types . 10 Figure 2 Typical ca
15、se rupture curves for approximately 30 000 cm case volume . 21 Figure 3 Star connection with the neutral grounded through a current transformer . 21 Figure 4 Star connection with voltage transformer between neutral and ground 21 Figure 5 Star connection with ungrounded neutral and voltage transforme
16、rs connected in an open delta 22 Figure 6 Double-star connection with ungrounded neutral . 22 Figure 7 Star connection with grounded neutral and voltage transformers connected in differential measurement . 22 Figure 8 Bridge connection 22 PD IEC/TS 60871-3:2015 4 IEC TS 60871-3:2015 IEC 2015 Figure
17、9 Line overcurrent relays for capacitor bank, grounded 22 Figure 10 Line overcurrent relays for capacitor bank, ungrounded 23 Table 1 Melting currents for type-K (fast) fuse links, in amperes . 23 Table 2 Melting currents for type-T (slow) fuse links, in amperes 24 PD IEC/TS 60871-3:2015IEC TS 60871
18、-3:2015 IEC 2015 5 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ SHUNT CAPACITORS FOR AC POWER SYSTEMS HAVING A RATED VOLTAGE ABOVE 1 000 V Part 3: Protection of shunt capacitors and shunt capacitor banks FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for s
19、tandardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes
20、 International Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with may parti
21、cipate in this preparatory work. International, governmental and non- governmental organizations liaising with the IEC also participate in this preparation. IEC collaborates closely with the International Organization for Standardization (ISO) in accordance with conditions determined by agreement be
22、tween the two organizations. 2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international consensus of opinion on the relevant subjects since each technical committee has representation from all interested IEC National Committees. 3) IEC Publicat
23、ions have the form of recommendations for international use and are accepted by IEC National Committees in that sense. While all reasonable efforts are made to ensure that the technical content of IEC Publications is accurate, IEC cannot be held responsible for the way in which they are used or for
24、any misinterpretation by any end user. 4) In order to promote international uniformity, IEC National Committees undertake to apply IEC Publications transparently to the maximum extent possible in their national and regional publications. Any divergence between any IEC Publication and the correspondi
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