CLC TS 50238-2-2015 Railway applications - Compatibility between rolling stock and train detection systems - Part 2 Compatibility with track circuits (Incorporating corrigendum Jul.pdf
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1、Railway applications Compatibility between rolling stock and train detection systemsPart 2: Compatibility with track circuitsPD CLC/TS 50238-2:2015Incorporating corrigendum July 2016BSI Standards PublicationPD CLC/TS 50238-2:2015 PUBLISHED DOCUMENTNational forewordThis Published Document is the UK i
2、mplementation of CLC/TS 50238-2:2015, incorporating corrigendum July 2016. It supersedes %$-454 which is withdrawn.The UK participation in its preparation was entrusted by Technical Committee GEL/9, Railway Electrotechnical Applications, to Subcommittee GEL/9/1, Railway Electrotechnical Applications
3、 - Signalling and communications.A list of organizations represented on this TVCcommittee can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Inst
4、itution 2016. Published by BSI Standards Limited 2016ISBN 978 0 580 95196 1ICS 29.280; 45.060.10Compliance with a British Standard cannot confer immunity from legal obligations.This British Standard was published under the authority of the Standards Policy and Strategy Committee on 30 June 2015.Amen
5、dments/corrigenda issued since publicationDate Text affected31 August 2016 Implementation of CENELEC corrigendum July 2016: Table A.1 modifiedTECHNICAL SPECIFICATION SPCIFICATION TECHNIQUE TECHNISCHE SPEZIFIKATION CLC/TS 50238-2 May 2015 ICS 29.280; 45.060.10 Supersedes CLC/TS 50238-2:2010English Ve
6、rsion Railway applications - Compatibility between rolling stock and train detection systems - Part 2: Compatibility with track circuits Applications ferroviaires - Compatibilit entre le matriel roulant et les systmes de dtection des trains - Partie 2 - Compatibilit avec les circuits de voie Bahnanw
7、endungen - Kompatibilitt zwischen Fahrzeugen und Gleisfreimeldesystemen - Teil 2: Kompatibilitt mit Gleisstromkreisen This Technical Specification was approved by CENELEC on 2015-04-20. CENELEC members are required to announce the existence of this TS in the same way as for an EN and to make the TS
8、available promptly at national level in an appropriate form. It is permissible to keep conflicting national standards in force. CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic, Denmark, Estonia, Finland, Former Yugoslav
9、Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. European Committee for Electrotechnical Standardi
10、zation Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung CEN-CENELEC Management Centre: Avenue Marnix 17, B-1000 Brussels 2015 CENELEC All rights of exploitation in any form and by any means reserved worldwide for CENELEC Members. Ref. No. CLC/TS 50238-
11、2:2015 EIncorporating corrigendum July 2016CLC/TS 50238-2:2015 - 2 - Contents Foreword . 5 Introduction . 6 1 Scope . 7 2 Normative references . 7 3 Terms, definitions and abbreviations. 8 3.1 Terms and definitions . 8 3.2 Abbreviations 9 4 General aspects of interference current limits for RST 10 4
12、.1 Derivation of interference current limits for RST . 10 4.2 Application of Interference current limits to RST design . 11 4.3 System definition 11 Annex A (normative) Interference current limits for RST . 14 A.1 Definitions . 14 A.2 Preferred track circuits for DC traction 14 A.3 Preferred track c
13、ircuits for RST for 16,7 Hz traction 15 A.4 Preferred track circuits for RST for 50 Hz traction . 15 A.5 UGSK3 . 16 A.6 UGSK95 . 16 A.7 FTGS 46 / FTGS 917/TCM100 16 A.8 GRS 17 A.9 Jade . 17 A.10 Coded track circuits for DC traction. 18 A.11 Digicode 18 A.12 CoRTo 18 A.13 CBDAC . 19 A.14 Preferred tr
14、ack circuit in Czech Republic 19 A.15 All kind of UM71 equipped with RENUM receptor and UC 9500 20 A.16 DC track circuits in UK 20 A.17 EBI Track 200 (TI21) . 21 A.18 EBI Track 400 21 A.19 FS3000 . 22 A.20 FS2000 / FS 2500 / FS 2550 / FS 5000 . 23 A.21 Track circuits of 95 Hz and 105 Hz in Norway .
15、23 A.22 JRK 10470 . 24 Annex B (normative) Rolling Stock Interference Evaluation methods 25 B.1 General 25 B.2 Selected evaluation method 25 B.3 Derivation of the interference current limits for RST . 26 B.4 Criteria for compatibility 27 B.4.1 Location . 27 B.4.2 Criteria 27 PD CLC/TS 50238-2:2015-
16、3 - CLC/TS 50238-2:2015 B.4.3 Safety and availability . 27 B.5 Defined interference current limits for RST: for use under interoperability regulation 27 B.6 Test specifications for RST interference measurements . 27 B.6.1 General . 27 B.6.2 Purpose of compatibility tests . 28 B.7 Test equipment requ
17、irements (hardware) . 31 B.8 Train interference analysis and evaluation methods . 31 B.8.1 Evaluation method 31 B.8.2 Summation rules . 32 B.9 Requirements for on-train interference monitoring and control . 33 B.10 Documentation . 34 Annex C (informative) Infrastructure data 35 C.1 Supply frequency
18、. 35 C.2 Infrastructure characterization . 35 C.3 Power supply impedance 36 C.4 Approximate calculation of the lowest power supply resonance frequency . 36 C.5 Simplified method to handle resonance effects with roof cables . 37 C.6 Return current transfer function . 39 Annex D (informative) Typical
19、voltage resonance graphs 40 D.1 General 40 D.2 Interface voltage/current measurement . 40 D.3 Voltage resonance graphs for 15 kV 16,7 Hz network 40 D.4 Voltage resonance graphs for 25 kV, 50 Hz network 41 D.5 Voltage resonance graphs for 1 500 V DC network 41 D.6 Voltage resonance graphs for 3 000 V
20、 DC network 42 Bibliography 43 Figures Figure 1 Examples of IUs . 9 Figure 2 System configuration considered for interference . 12 Figure B.1 Time domain method 26 Figure B.2 Superposition factors 33 Figure C.1 Infrastructure characterization 35 Figure C.2 Power supply admittance 36 Figure C.3 Reson
21、ance effects for various RST positions. 38 Figure C.4 Resonance effects for various RST input capacitance 39 Figure D.1 Voltage resonance graph for 15 kV 16,7 Hz network . 41 Figure D.2 Voltage resonance graphs for 25 kV 50 Hz network 41 Figure D.3 Voltage resonance graphs for 1 500 V DC network . 4
22、2 Figure D.4 Impedance graphs for 3 000 V DC network . 42 PD CLC/TS 50238-2:2015CLC/TS 50238-2:2015 - 4 - Tables Table A.1 UGSK3 . 16 Table A.2 UGSK95 . 16 Table A.3 FTGS/TCM100 16 Table A.4 GRS . 17 Table A.5 GRS - limits due to rectifying traction supply 17 Table A.6 Jade 25 kV, 50 Hz lines . 17 T
23、able A.7 Jade DC lines . 18 Table A.8 Limits for BACC and CDB 83,3 Hz . 18 Table A.9 Digicode . 18 Table A.10 CoRTo 18 Table A.11 CBDAC . 19 Table A.12 50 Hz AC and DC Traction . 19 Table A.13 UM71 C, UM71 CB, UM71C TVM and UC9500 . 20 Table A.14 DC track circuits in UK 20 Table A.15 EBI Track 200 (
24、TI-21) Double Rail Limit for in-band frequencies AC traction only . 21 Table A.16 EBI Track 200 (TI-21) Double Rail Limit for in-band frequencies DC traction or non-electrified lines . 21 Table A.17 EBI Track 400 Open Line Frequency Double Rail Track Circuit Limit for in-band frequencies . 21 Table
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