1、 IEC TR 62543 Edition 1.2 2017-05 CONSOLIDA TED V ER SION High-v oltage direct current(HV DC)power transmission using v oltage sourced conv erters(V SC)IEC TR 62543:2011-03+AMD1:2013-07+A MD2:2017-05 CSV(en)colourinside THIS PUBLICA TION IS COPYRIGHT PROTECTED Copyright 2017 IEC,Geneva,Switzerland A
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9、C Glossar y-st d.iec.ch/glossary 65 000 elec trotechnical terminology entries in English and French extracted from the Terms and Definitions clause of IEC publications issued since 2002.Some entries hav e been collected from earlier publications of IEC TC 37,77,86 and CISPR.IEC Customer Service Cent
10、 re-webstore.iec.ch/csc If y ou wish to giv e us y our feedback on this publication or need further assistance,please contact the Customer Serv ice Centre:csciec.ch.IEC TR 62543 Edit ion 1.2 2017-05 CONSOLIDA TED VERSION High-v oltage direct current(HV DC)power transmission using v oltage sourced co
11、nv erters(V SC)INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.200;29.240.99 ISBN 978-2-8322-4416-6 R egist er ed tr ademar k of t he Int er national Electr ot echnical Commission W arning!Make sure that y ou obtained this publication from an authorized distributor.colourinside IEC TR 62543 Edition
12、 1.2 2017-05 REDLINE V ER SION High-v oltage direct current(HV DC)power transmission using v oltage sourced conv erters(V SC)IEC TR 62543:2011-03+AMD1:2013-07+A MD2:2017-05 CSV(en)colourinside 2 IEC TR 62543:2011+AMD1:2013 +AMD2:2017 CSV IEC 2017 CONTENTS FOREWORD.6 1 Scope.8 2 Normative references.
13、8 3 Terms and definitions.8 3.1 General.8 3.2 Letter symbols.11 3.3 Power semiconductor terms.3.4 VSC topologies.3.5 VSC transmission.14 3.6 Operating states.3.7 Type tests.16 3.8 Production tests.17 3.9 Sample tests.17 3.10 Insulation co-ordination terms.3.11 Power losses.17 4 VSC transmission over
14、view.18 4.1 Basic operating principles of VSC transmission.18 4.1.1 The voltage sourced converter as a black box.18 4.1.2 The principles of active and reactive power control.19 4.1.3 Operating principles of a VSC transmission scheme.21 4.1.4 Applications of VSC transmission.22 4.2 Design life.22 4.3
15、 VSC transmission configurations.22 4.3.1 General.22 4.3.2 D.C.circuit configurations.23 4.3.3 Monopole configuration.23 4.3.4 Bipolar configuration.24 4.3.5 Parallel connection of two converters.25 4.3.6 Series connection of two converters.26 4.3.7 Parallel and series connection of more than two co
16、nverters.26 4.4 Semiconductors for VSC transmission.27 5 VSC transmission converter topologies.28 5.1 General.28 5.2 Converter topologies with VSC valves of“switch”type.29 5.2.1 General.29 5.2.2 Operating principle.29 5.2.3 Topologies.30 5.3 Converter topologies with VSC valves of the“controllable voltage source”type.33 5.3.1 General.33 5.3.2 MMC topology with VSC levels in half-bridge topology.35 5.3.3 MMC topology with VSC levels in full-bridge topology.37 5.3.4 CTL topology with VSC cells in