PD IEC/TR 62001:2009
Withdrawn
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High-voltage direct current (HVDC) systems. Guidebook to the specification and design evaluation of A.C. filters
Hardcopy , PDF
31-10-2016
PD IEC/TR 62001-3:2016
PD IEC/TR 62001-2:2016
PD IEC/TR 62001-1:2016
PD IEC/TR 62001-4:2016
English
31-07-2010
FOREWORD
1 Scope
2 Normative references
3 Outline of specifications of a.c. filters for
HVDC systems
4 Permissible distortion units
5 Harmonic generation
6 Harmonic interaction across converters
7 Filter arrangements
8 Filter performance calculation
9 Filter switching and reactive power management
10 Steady state rating
11 Transient stresses and rating
12 Losses
13 Design issues and special applications
14 Protection
15 Seismic requirements
16 Audible noise
17 Customer specified parameters and requirements
18 Equipment design and test parameters
19 Field measurements and verification
20 Future developments
Annex A (informative) - Alternative type of procurement
procedure
Annex B (informative) - Voltage and current distortion -
Telephone interference
Annex C (informative) - Formulae for calculating the
characteristic harmonics of a bridge converter
Annex D (informative) - Equivalent frequency deviation
Annex E (informative) - Reactive power management
Annex F (informative) - Background to loss evaluation
Annex G (informative) - Example of response spectra
(from IEEE 693 - 1997)
Annex H (informative) - Definitions of acoustic parameters
Bibliography
Describes the specification and design evaluation of a.c. side harmonic performance and a.c. side filters for high-voltage direct current (HVDC) schemes.
Committee |
PEL/22
|
DevelopmentNote |
Supersedes DD IEC PAS 62001. (07/2010)
|
DocumentType |
Standard
|
Pages |
216
|
PublisherName |
British Standards Institution
|
Status |
Withdrawn
|
SupersededBy | |
Supersedes | |
UnderRevision |
This technical report deals with the specification and design evaluation of a.c. side harmonic performance and a.c. side filters for high-voltage direct current (HVDC) schemes. It is intended to be primarily for the use of the utilities and consultants who are responsible for issuing the technical specifications for new HVDC projects and evaluating designs proposed by prospective suppliers.
The scope of this technical report covers a.c. side filtering for the frequency range of interest in terms of harmonic distortion and audible frequency disturbances. It excludes filters designed to be effective in the Power Line Carrier (PLC) and radio interference spectra.
The bulk of the document concentrates on the “conventional” a.c. filter technology and current-source line-commutated HVDC converters. Discussion of the changes entailed by new technologies is treated exclusively in Clause 20. Other unusual applications, such as series filters, which use conventional technology but are only employed in very specific circumstances, are discussed in Clause 13.
The term “technical report” or “report” used in this document is taken to mean the document which defines the overall system requirements for the a.c. filters and the a.c. system environment in which they have to operate. Such a document is normally issued by utilities to the prospective HVDC manufacturers. It also ensures the uniformity of proposals and sets guidelines for the evaluation of bids. The term as used here does not refer to the detailed engineering specifications relating to individual items of equipment, which are prepared by the HVDC manufacturer as a result of the filter design process.
The technical report defines the technical basis for a contract between two parties, who in this document will be referred to as the “customer” and the “contractor”.
The “customer” is the organisation which is purchasing the HVDC converter station, including the a.c. filters. The term “customer” is taken to cover similar terms which may be used in specifications, such as owner, client, buyer, utility, user, employer and purchaser, and also covers a consultant representing the customer.
The “contractor” has the overall responsibility for delivery of the HVDC converter station, including the a.c. filters, as a system, and may in turn contract one or more sub-suppliers of individual items of equipment. The term “contractor” is taken to cover similar terms which may be used in specifications, such as manufacturer, or supplier.
Where the context clearly refers to the pre-contract stage of a project, the word “bidder” has been used instead of “contractor”, to indicate a prospective contractor, or tenderer.
Standards | Relationship |
IEC TR 62001:2009 | Identical |
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IEC 60044-5:2004 | Instrument transformers - Part 5: Capacitor voltage transformers |
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IEC 60044-2:1997+AMD1:2000+AMD2:2002 CSV | Instrument transformers - Part 2 : Inductive voltage transformers |
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IEC 60076-10:2016 | Power transformers - Part 10: Determination of sound levels |
IEEE C57.16-2011 | IEEE Standard for Requirements, Terminology, and Test Code for Dry-Type Air-Core Series-Connected Reactors |
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IEC 60056:1987 | High-voltage alternating-current circuit-breakers |
IEC 60549:2013 | High-voltage fuses for the external protection of shunt capacitors |
IEC TR 62543:2011+AMD1:2013 CSV | High-voltage direct current (HVDC) power transmission using voltage sourced converters (VSC) |
IEC TS 60071-5:2002 | Insulation co-ordination - Part 5: Procedures for high-voltage direct current (HVDC) converter stations |
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IEC 60044-6:1992 | Instrument transformers - Part 6: Requirements for protective current transformers for transient performance |
IEC TR 60919-2:2008+AMD1:2015 CSV | Performance of high-voltage direct current (HVDC) systems withline-commutated converters - Part 2: Faults and switching |
IEC 60871-1:2014 | Shunt capacitors for a.c. power systems having a rated voltage above 1 000 V - Part 1: General |
IEC 60044-1:1996+AMD1:2000+AMD2:2002 CSV | Instrument transformers - Part 1: Current transformers |
IEC 60076-6:2007 | Power transformers - Part 6: Reactors |
IEC 60099-5:2013 | Surge arresters - Part 5: Selection and application recommendations |
IEC TR 61000-2-1:1990 | Electromagnetic compatibility (EMC) - Part 2: Environment - Section 1: Description of the environment - Electromagnetic environment for low-frequency conducted disturbances and signalling in public power supply systems |
IEC 60034-1:2017 | Rotating electrical machines - Part 1: Rating and performance |
IEC 60931-3:1996 | Shunt capacitors of the non-self-healing type for AC power systems having a rated voltage up to and including 1000 V - Part 3: Internal fuses |
IEC 62271-1:2017 | High-voltage switchgear and controlgear - Part 1: Common specifications for alternating current switchgear and controlgear |
IEC 60071-2:1996 | Insulation co-ordination - Part 2: Application guide |
IEC 61000-4-7:2002+AMD1:2008 CSV | Electromagnetic compatibility (EMC) - Part 4-7: Testing and measurement techniques - General guide on harmonics and interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto |
IEC 60507:2013 | Artificial pollution tests on high-voltage ceramic and glass insulators to be used on a.c. systems |
IEC 60071-1:2006+AMD1:2010 CSV | Insulation co-ordination - Part 1: Definitions, principles and rules |
IEC TR 61000-3-6:2008 | Electromagnetic compatibility (EMC) - Part 3-6: Limits - Assessment of emission limits for the connection of distorting installations to MV, HV and EHV power systems |
IEC 60076-10-1:2016 | Power transformers - Part 10-1: Determination of sound levels - Application guide |
IEC TS 60871-3:2015 | Shunt capacitors for a.c. power systems having a rated voltage above 1000 V - Part 3: Protection of shunt capacitors and shunt capacitor banks |
IEEE 18-2012 | IEEE Standard for Shunt Power Capacitors |
IEEE 693-2005 | IEEE Recommended Practice for Seismic Design of Substations |
IEC 62271-104:2015 | High-voltage switchgear and controlgear - Part 104: Alternating current switches for rated voltages higher than 52 kV |
IEC 60168:1994+AMD1:1997+AMD2:2000 CSV | Tests on indoor and outdoor post insulators of ceramic material or glass for systems with nominal voltages greater than 1000 V |
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