Converter transformers - Part 1: Transformers for industrial applications

IEC 61378-1:2011 deals with the specification, design and testing of power transformers and reactors which are intended for integration within semiconductor converter plants. The scope of this International Standard is limited to application of power converters of any power rating. Typical applications are:
- thyristor rectifiers for electrolysis;
- diode rectifiers for electrolysis;
- thyristor rectifiers for large drives;
- thyristor rectifiers for scrap melting furnaces, and
- diode rectifiers feeding inverters for variable speed drives. The standard also covers the regulating unit utilized in such application as step down regulating transformers or autotransformers. This edition includes the following significant technical changes with respect to the previous edition:
- addition of winding connections with phase displacement (30°);
- addition of transformers with more than one active part in the same tank;
- change of reference power definition;
- addition of regulating transformer feeding converter transformer;
- addition of considerations about current sharing and hot spot temperature in high current windings for various winding arrangements;
- addition of transductors used for d.c. voltage regulation together with diode rectifiers. The contents of the corrigendum of January 2012 have been included in this copy.

Transformateurs de conversion - Partie 1: Transformateurs pour applications industrielles

L'IEC 61378-1:2011 traite de la spécification, la conception et l'essai des transformateurs de puissance et des réacteurs qui sont destinés à l'intégration au sein des convertisseurs à semi-conducteurs, il n'est pas applicable aux transformateurs conçus pour la distribution industrielle ou publique de pouvoir a.c. en général. Cette édition inclut les changements techniques significatifs suivants par rapport à la précédente édition:
- Addition de couplages d'enroulements (zigzag, triangle prolongé, etc.) avec déphasage ( - Addition de transformateurs ayant plus d'une partie active dans la même cuve.
- Changement de la définition de la puissance de référence (elle est désormais basée sur la composante fondamentale du courant).
- Addition de considérations pour des lignes directrices relatives à la sélection de changeurs de prise en charge (OLTC, On-Load Tap-Changers).
- Addition du transformateur de régulation alimentant un transformateur de conversion.
- Addition de considérations relatives à la répartition des courants et aux points chauds dans les enroulements à fort courant pour diverses dispositions d'enroulements.
- Addition de transducteurs magnétiques pour la régulation de tension continue avec des redresseurs à diodes.
- Amélioration des anciennes annexes avec plusieurs exemples de calcul.
- Additions de nouvelles annexes pour les montages de mesure spéciaux.

General Information

Status
Published
Publication Date
25-Jul-2011
Technical Committee
Drafting Committee
Current Stage
PPUB - Publication issued
Start Date
15-Aug-2011
Completion Date
26-Jul-2011
Ref Project

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IEC 61378-1 ®
Edition 2.0 2011-07
INTERNATIONAL
STANDARD
colour
inside
Converter transformers –
Part 1: Transformers for industrial applications

All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form
or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from
either IEC or IEC's member National Committee in the country of the requester.
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IEC 61378-1 ®
Edition 2.0 2011-07
INTERNATIONAL
STANDARD
colour
inside
Converter transformers –
Part 1: Transformers for industrial applications

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
PRICE CODE
XC
ICS 29.180 ISBN 978-2-88912-602-6

– 2 – 61378-1 © IEC:2011(E)
CONTENTS
FOREWORD . 6
1 Scope . 8
2 Normative references. 9
3 Terms, definitions and acronyms . 9
3.1 Terms and definitions . 9
3.2 Acronyms . 10
4 Classification . 11
4.1 General . 11
4.2 Normal service conditions . 11
4.3 Provision for unusual service conditions . 12
5 Ratings . 12
5.1 General . 12
5.2 Rated power at rated frequency and load capability . 12
5.3 Rated and service voltages . 13
5.3.1 Transformer energized from an a.c. power system . 13
5.3.2 Transformer energized from a converter/inverter with or without
variable frequency . 13
5.4 Rated current . 13
5.5 Phase displacement and terminal identification for three-phase transformer . 13
5.6 Rating plate . 14
5.7 Units with tertiary windings loaded with filter and compensation . 14
5.8 On load tap-changers . 15
6 Load loss and voltage drop in transformers and reactors . 15
6.1 General . 15
6.2 Determination of transformer load loss under distorted current loading . 15
6.3 Current sharing, losses and hot spot in high current windings . 19
6.4 Effect of geometrical winding arrangement and magnetic coupling between
windings on their eddy current losses due to harmonics in transformers with
three or more windings wound on the same core limb . 20
6.5 Losses in interphase transformers, current-balancing reactors, series-
smoothing reactors and transductors . 26
6.5.1 General . 26
6.5.2 Interphase transformers . 26
6.5.3 Current-balancing reactors . 26
6.5.4 Series-smoothing reactors . 26
6.5.5 Transductors . 26
6.6 Voltage drops in transformers and reactors . 27
6.6.1 General . 27
6.6.2 Transductors . 28
7 Tests for converter transformers . 29
7.1 General . 29
7.2 Measurement of commutating reactance and determination of the inductive
voltage drop . 30
7.2.1 Commutating reactance . 30
7.2.2 Inductive voltage regulation . 30
7.3 Measurement of voltage ratio and phase displacement . 31
7.4 Dielectric tests . 31

61378-1 © IEC:2011(E) – 3 –
7.4.1 General . 31
7.4.2 Dielectric test between interleaved valve windings . 31
7.5 Load loss test . 32
7.5.1 General . 32
7.5.2 Load loss measurement in rectifier transformers with transductors in
the same tank . 32
7.5.3 Test bus bars configuration for short circuit of high current valve
windings . 32
7.6 Temperature rise tests . 32
7.6.1 General . 32
7.6.2 Total loss injection . 33
7.6.3 Rated load loss injection . 33
7.6.4 Test of temperature rise on dry-type transformers . 35
8 On load noise level with transductors and/or IPT . 35
Annex A (informative) Determination of transformer service load loss at rated non-
sinusoidal converter current from measurements with rated transformer current
of fundamental frequency . 38
Annex B (informative) Short-circuit test currents and load losses in transformers for
single-way converters (total loss injection) . 56
Annex C (informative) Current sharing measurement in high current valve windings . 57
Annex D (informative) Examples of duty cycles . 66
Annex E (informative) Guidelines for design review . 67
Annex F (informative) Determination of loss in transformer tank due to magnetic field.
3D simulation and guidelines for tank losses evaluation and tank hotspot
calculation . 70
Annex G (informative) Short-circuit measurements of rectifier transformers equipped
with built in transductors . 71
Annex H (informative) Determination of the transformer voltage ratio and phase
displacement by the turn ratio measurements . 73
Annex I (informative) Phase displacement connections and terminal indications of
converter transformers . 78
Annex J (normative) Correlation between IEC 61378-1 and IEC 60146-1-1 ratings . 83
Bibliography . 90

Figure 1 – B6U or DB 6 pulse double bridge connection . 10
Figure 2 – DSS 6 pulse connection . 11
Figure 3 – Leakage fields for a three-winding transformer with closely coupled valve
windings. 22
Figure 4 – Leakage fields for a three-winding transformer with decoupled valve
windings. 23
Figure 5 – Leakage fields for a three winding transformer with loosely coupled double
concentric valve windings . 24
Figure 6 – Leakage fields for a three winding transformer with loosely coupled double-
tier valve windings . 25
Figure 7 – Typical transductor regulating curve (with max voltage drop at zero control
current) and tolerance band . 28
Figure A.1 – Cross-section of a winding strand . 40
Figure A.2 – Terminal identification for winding connection Y y0y6 . 43
Figure A.3 – Terminal identification for winding connection D d0y1 . 46

– 4 – 61378-1 © IEC:2011(E)
Figure A.4 – Valve current DB connection rectangular shape positive shape . 47
Figure A.5 – Valve current DB connection rectangular shape positive and negative
shape. 48
Figure A.6 – Valve current DSS connection rectangular shape . 52
Figure C.1 – Example of valve high current winding and measurement equipment
disposition . 58
Figure C.2 – Transformer windings arrangement . 59
Figure C.3 – Measurement circuit for the in-phase measurement . 60
Figure C.4 – Measurement circuit for the in-opposition measurement. 61
Figure C.5 – Measurements and comparison with the simulations made by finite
element method software for the in-phase current distribution . 63
Figure C.6 – Measurements and comparison with the simulations made by finite
element method software fo
...


IEC 61378-1 ®
Edition 2.0 2011-07
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Converter transformers –
Part 1: Transformers for industrial applications

Transformateurs de conversion -
Partie 1: Transformateurs pour applications industrielles

All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form
or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from
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IEC 61378-1 ®
Edition 2.0 2011-07
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Converter transformers –
Part 1: Transformers for industrial applications

Transformateurs de conversion -

Partie 1: Transformateurs pour applications industrielles

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
PRICE CODE
INTERNATIONALE
CODE PRIX XC
ICS 29.180 ISBN 978-2-8322-1698-9

– 2 – IEC 61378-1:2011 © IEC 2011
CONTENTS
FOREWORD . 6
1 Scope . 8
2 Normative references. 9
3 Terms, definitions and acronyms . 9
3.1 Terms and definitions . 9
3.2 Acronyms . 10
4 Classification . 11
4.1 General . 11
4.2 Normal service conditions . 11
4.3 Provision for unusual service conditions . 12
5 Ratings . 12
5.1 General . 12
5.2 Rated power at rated frequency and load capability . 12
5.3 Rated and service voltages . 13
5.3.1 Transformer energized from an a.c. power system . 13
5.3.2 Transformer energized from a converter/inverter with or without
variable frequency . 13
5.4 Rated current . 13
5.5 Phase displacement and terminal identification for three-phase transformer . 13
5.6 Rating plate . 14
5.7 Units with tertiary windings loaded with filter and compensation . 14
5.8 On load tap-changers . 15
6 Load loss and voltage drop in transformers and reactors . 15
6.1 General . 15
6.2 Determination of transformer load loss under distorted current loading . 15
6.3 Current sharing, losses and hot spot in high current windings . 19
6.4 Effect of geometrical winding arrangement and magnetic coupling between
windings on their eddy current losses due to harmonics in transformers with
three or more windings wound on the same core limb . 20
6.5 Losses in interphase transformers, current-balancing reactors, series-
smoothing reactors and transductors . 26
6.5.1 General . 26
6.5.2 Interphase transformers . 26
6.5.3 Current-balancing reactors . 26
6.5.4 Series-smoothing reactors . 26
6.5.5 Transductors . 26
6.6 Voltage drops in transformers and reactors . 27
6.6.1 General . 27
6.6.2 Transductors . 28
7 Tests for converter transformers . 29
7.1 General . 29
7.2 Measurement of commutating reactance and determination of the inductive
voltage drop . 30
7.2.1 Commutating reactance . 30
7.2.2 Inductive voltage regulation . 30
7.3 Measurement of voltage ratio and phase displacement . 31
7.4 Dielectric tests . 31

7.4.1 General . 31
7.4.2 Dielectric test between interleaved valve windings . 31
7.5 Load loss test . 32
7.5.1 General . 32
7.5.2 Load loss measurement in rectifier transformers with transductors in
the same tank . 32
7.5.3 Test bus bars configuration for short circuit of high current valve
windings . 32
7.6 Temperature rise tests . 32
7.6.1 General . 32
7.6.2 Total loss injection . 33
7.6.3 Rated load loss injection . 33
7.6.4 Test of temperature rise on dry-type transformers . 35
8 On load noise level with transductors and/or IPT . 35
Annex A (informative) Determination of transformer service load loss at rated non-
sinusoidal converter current from measurements with rated transformer current
of fundamental frequency . 38
Annex B (informative) Short-circuit test currents and load losses in transformers for
single-way converters (total loss injection) . 56
Annex C (informative) Current sharing measurement in high current valve windings . 57
Annex D (informative) Examples of duty cycles . 66
Annex E (informative) Guidelines for design review . 67
Annex F (informative) Determination of loss in transformer tank due to magnetic field.
3D simulation and guidelines for tank losses evaluation and tank hotspot calculation . 70
Annex G (informative) Short-circuit measurements of rectifier transformers equipped
with built in transductors .
...

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