BS PD IEC TR 62001-1-2016 High-voltage direct current (HVDC) systems Guidance to the specification and design evaluation of AC filters Overview《高压直流 (HVDC) 系统 交流滤波器的规格和设计评.pdf
《BS PD IEC TR 62001-1-2016 High-voltage direct current (HVDC) systems Guidance to the specification and design evaluation of AC filters Overview《高压直流 (HVDC) 系统 交流滤波器的规格和设计评.pdf》由会员分享,可在线阅读,更多相关《BS PD IEC TR 62001-1-2016 High-voltage direct current (HVDC) systems Guidance to the specification and design evaluation of AC filters Overview《高压直流 (HVDC) 系统 交流滤波器的规格和设计评.pdf(120页珍藏版)》请在麦多课文档分享上搜索。
1、High-voltage direct current (HVDC) systems Guidance to the specification and design evaluation of AC filters Part 1: Overview PD IEC/TR 62001-1:2016 BSI Standards Publication WB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06National foreword T h i s P u b l i s h e d D o c u m e n t i s t h e
2、 U K i m p l e m e n t a t i o n o f I E C / T R 6 2 0 0 1 - 1 : 2 0 1 6 . T o g e t h e r w i t h P D I E C / T R 6 2 0 0 1 - 2 , P D I E C / T R 6 2 0 0 1 - 3 a n d P D I E C / T R 6 2 0 0 1 - 4 : 2 0 1 6 , i t s u p e r s e d e s P D I E C / T R 6 2 0 0 1 : 2 0 0 9 w h i c h w i l l b e w i t h d
3、 r a w n o n p u b l i c a t i o n o f a l l p a r t s o f t h i s s e r i e s . The UK participation in its preparation was entrusted to Technical Committee PEL/22, Power electronics. A list of organizations represented on this committee can be obtained on request to its secretary. This publication
4、 does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2016. Published by BSI Standards Limited 2016 ISBN 978 0 580 85252 7 ICS 29.200 Compliance with a British Standard cannot confer immunity from
5、 legal obligations. This Published Document was published under the authority of the Standards Policy and Strategy Committee on 31 July 2016. Amendments/corrigenda issued since publication Date Text affected PUBLISHED DOCUMENT PD IEC/TR 62001-1:2016IEC TR 62001-1 Edition 1.0 2016-05 TECHNICAL REPORT
6、 High-voltage direct current (HVDC) systems Guidance to the specification and design evaluation of AC filters Part 1: Overview INTERNATIONAL ELECTROTECHNICAL COMMISSION ICS 29.200 ISBN 978-2-8322-3401-3 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you
7、 obtained this publication from an authorized distributor. colour insideThis page deliberately left blank 2 IEC TR 62001-1:2016 IEC 2016 CONTENTS FOREWORD 8 INTRODUCTION 10 1 Scope . 11 2 Terms and definitions 11 3 Outline of specifications of AC filters for HVDC systems 12 3.1 General 12 3.2 Bounda
8、ries of responsibility 13 3.3 Scope of studies . 14 3.4 Scope of supply 15 3.5 Technical data to be supplied by contractor . 16 3.6 Alternative proposals by bidders 16 4 Permissible distortion limits . 17 4.1 General 17 4.2 Voltage distortion 18 4.2.1 General . 18 4.2.2 Voltage distortion Definition
9、s of performance criteria . 18 4.2.3 Voltage distortion Discussion and recommendations 18 4.2.4 Voltage distortion Determination of limits . 19 4.2.5 Voltage distortion Pre-existing harmonic levels 22 4.2.6 Voltage distortion Relaxed limits for short term and infrequent conditions 23 4.2.7 Treatment
10、 of interharmonic frequencies . 23 4.3 Distortion limits pertaining to the HV and EHV network equipment . 24 4.3.1 HVAC transmission system equipment . 24 4.3.2 Harmonic currents in synchronous machines 24 4.3.3 Nearby HVDC installations . 25 4.4 Telephone interference . 25 4.4.1 General . 25 4.4.2
11、Causes of telephone interference . 25 4.4.3 Telephone interference Definitions of performance criteria. 25 4.4.4 Telephone interference Discussion 25 4.4.5 Telephone interference Determination of limits 26 4.4.6 Telephone interference Pre-existing harmonic levels . 28 4.4.7 Telephone interference Li
12、mits for temporary conditions . 28 4.5 Special criteria 29 5 Harmonic generation . 29 5.1 General 29 5.2 Converter harmonic generation . 29 5.2.1 Idealized conditions . 29 5.2.2 Realistic conditions 31 5.3 Calculation methodology . 33 5.3.1 General . 33 5.3.2 Harmonic currents for performance, ratin
13、g and other calculations . 33 5.3.3 Combining harmonics from different converter bridges . 34 5.3.4 Consistent sets 34 5.3.5 Harmonic generation for different DC power ranges 35 PD IEC/TR 62001-1:2016IEC TR 62001-1:2016 IEC 2016 3 5.4 Sensitivity of harmonic generation to various factors . 36 5.4.1
14、Direct current, control angle and commutation overlap 36 5.4.2 Effect of asymmetries on characteristic harmonics . 37 5.4.3 Converter equipment parameter tolerances 37 5.4.4 Tap steps 37 5.4.5 Theoretically cancelled harmonics 37 5.4.6 Negative and zero phase sequence voltages 38 5.4.7 Converter tra
15、nsformer saturation 38 5.4.8 Harmonic interaction across the converter 39 5.4.9 Back-to-back systems 39 5.5 Externally generated harmonics 39 6 Filter arrangements . 40 6.1 Overview 40 6.2 Advantages and disadvantages of typical filters . 41 6.3 Classification of filter types . 41 6.4 Tuned filters
16、42 6.4.1 Single tuned filters . 42 6.4.2 Double tuned filters 43 6.4.3 Triple tuned filters 45 6.5 Damped filters 46 6.5.1 Single tuned damped filters 46 6.5.2 Double tuned damped filters. 49 6.6 Choice of filters . 49 7 Filter performance calculation 50 7.1 Calculation procedure . 50 7.1.1 General
17、. 50 7.1.2 Input data 51 7.1.3 Methodology 51 7.1.4 Calculation of converter harmonic currents . 52 7.1.5 Selection of filter types and calculation of their impedances . 52 7.1.6 Calculation of performance 53 7.2 Detuning and tolerances . 54 7.2.1 General . 54 7.2.2 Detuning factors 54 7.2.3 Resista
18、nce variations . 55 7.2.4 Modelling . 55 7.3 Network impedance for performance calculations 56 7.3.1 General . 56 7.3.2 Network modelling using impedance envelopes 57 7.3.3 Sector diagram 58 7.3.4 Circle diagram . 59 7.3.5 Discrete polygons 59 7.3.6 Zero-sequence impedance modelling . 61 7.3.7 Detai
19、led modelling of AC network for performance calculation 61 7.4 Outages of filter banks and sub-banks . 62 7.5 Considerations of probability . 63 7.6 Flexibility regarding compliance 65 7.7 Ratings of the harmonic filter equipment 65 8 Filter switching and reactive power management . 65 PD IEC/TR 620
20、01-1:2016 4 IEC TR 62001-1:2016 IEC 2016 8.1 General 65 8.2 Reactive power interchange with AC network 66 8.2.1 General . 66 8.2.2 Impact on reactive compensation and filter equipment 66 8.2.3 Evaluation of reactive power interchange . 67 8.3 HVDC converter reactive power capability . 67 8.4 Bank/su
21、b-bank definitions and sizing . 67 8.4.1 General . 67 8.4.2 Sizing 68 8.5 Hysteresis in switching points . 70 8.6 Converter Q-V control near switching points 71 8.7 Operation at increased converter control angles 71 8.8 Filter switching sequence and harmonic performance 71 8.9 Demarcation of respons
22、ibilities 72 8.9.1 General . 72 8.9.2 Customer . 72 8.9.3 Contractor . 73 9 Customer specified parameters and requirements 73 9.1 General 73 9.2 AC system parameters 73 9.2.1 Voltage 73 9.2.2 Voltage unbalance . 74 9.2.3 Frequency . 74 9.2.4 Short circuit level . 74 9.2.5 Filter switching . 75 9.2.6
23、 Reactive power interchange . 75 9.2.7 System harmonic impedance 75 9.2.8 Zero sequence data . 75 9.2.9 System earthing . 75 9.2.10 Insulation level . 75 9.2.11 Creepage distances . 75 9.2.12 Pre-existing voltage distortion 75 9.3 Harmonic distortion requirements 76 9.3.1 General . 76 9.3.2 Redundan
24、cy requirements . 76 9.4 Environmental conditions 76 9.4.1 Temperature 76 9.4.2 Pollution 76 9.4.3 Wind 77 9.4.4 Ice and snow loading (if applicable) . 77 9.4.5 Solar radiation . 77 9.4.6 Isokeraunic levels 77 9.4.7 Seismic requirements . 77 9.4.8 Audible noise . 77 9.5 Electrical environment . 77 9
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