1、 IEC/TR 60919-1 Edition 3.1 2013-04 TECHNICAL REPORT Performance of high-voltage direct current(HVDC)systems with line-commutated converters Part 1:Steady-state conditions IEC/TR 60919-1:2010+A1:2013(E)colourinsideCopyrighted material licensed to BR Demo by Thomson Reuters(Scientific),Inc.,downloade
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10、 60919-1 Edition 3.1 2013-04 TECHNICAL REPORT Performance of high-voltage direct current(HVDC)systems with line-commutated converters Part 1:Steady-state conditions INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.200;29.240.99 ISBN 978-2-8322-0794-9 Registered trademark of the International Electro
11、technical Commission Warning!Make sure that you obtained this publication from an authorized distributor.colourinsideCopyrighted material licensed to BR Demo by Thomson Reuters(Scientific),Inc.,downloaded on Nov-27-2014 by James Madison.No further reproduction or distribution is permitted.Uncontroll
12、ed when printed.2 TR 60919-1 IEC:2010+A1:2013(E)CONTENTS FOREWORD.7 1 Scope.9 2 Normative references.10 3 Types of HVDC systems.11 3.1 General.11 3.2 HVDC back-to-back system.11 3.3 Monopolar earth return HVDC system.13 3.4 Monopolar metallic return HVDC system.15 3.5 Bipolar earth return HVDC syste
13、m.16 3.6 Bipolar metallic return HVDC system.19 3.7 Two 12-pulse groups per pole.20 3.8 Converter transformer arrangements.21 3.9 DC switching considerations.25 3.10 Series capacitor compensated HVDC systems.28 4 Environment information.32 5 Rated power,current and voltage.34 5.1 Rated power.34 5.1.
14、1 General.34 5.1.2 Rated power of an HVDC system with transmission line.35 5.1.3 Rated power of an HVDC back-to-back system.35 5.1.4 Direction of power flow.35 5.2 Rated current.35 5.3 Rated voltage.35 6 Overload and equipment capability.36 6.1 Overload.36 6.2 Equipment capability.36 6.2.1 General.3
15、6 6.2.2 Converter valve capability.37 6.2.3 Capability of oil-cooled transformers and reactors.37 6.2.4 AC harmonic filter and reactive power compensation equipment capability.37 6.2.5 Switchgear and buswork capability.38 7 Minimum power transfer and no-load stand-by state.38 7.1 General.38 7.2 Mini
16、mum current.38 7.3 Reduced direct voltage operation.38 7.4 No-load stand-by state.39 7.4.1 General.39 7.4.2 Converter transformers No-load stand-by.39 7.4.3 Converter valves No-load stand-by.39 7.4.4 AC filters and reactive compensation No-load stand-by.39 7.4.5 DC reactors and d.c.filters No-load stand-by.39 7.4.6 Auxiliary power system No-load stand-by.39 7.4.7 Control and protection No-load stand-by.39 Copyrighted material licensed to BR Demo by Thomson Reuters(Scientific),Inc.,downloaded