Railway signalling and interlocking: international compendium
Gespeichert in:
Weitere Verfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Leverkusen
PMC Media House GmbH
2020
|
Ausgabe: | 3rd edition |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 552 Seiten Illustrationen, Diagramme 25 cm Enthält: 1 Online-Ressource |
ISBN: | 9783962451691 3962451692 |
Internformat
MARC
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245 | 1 | 0 | |a Railway signalling and interlocking |b international compendium |c editors: Dr.-Ing. Gregor Theeg ; Dr.-Ing. Sergej Vlasenko ; authors: Dr.-Ing. Enrico Anders [und 26 weitere] |
250 | |a 3rd edition | ||
264 | 1 | |a Leverkusen |b PMC Media House GmbH |c 2020 | |
300 | |a 552 Seiten |b Illustrationen, Diagramme |c 25 cm |e Enthält: 1 Online-Ressource | ||
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653 | |a CBTC | ||
653 | |a ETCS | ||
653 | |a PTC | ||
653 | |a railway Interlocking | ||
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Datensatz im Suchindex
_version_ | 1804180701445095424 |
---|---|
adam_text | Contents
Contents
Preface 15
1 Introduction 17
1 1 Historical Abstract 17
1 2 Scope of this Book 18
1 3 Characteristics of Railway Systems 18
1 4 Safety of Rail Traffic 19
1 5 Definitions 19
1 6 Protective Functions 20
1 7 The Control Loop 20
1 8 Attempts for Unification of Signalling 21
2 Safety in Signalling Systems 23
2 1 Overview of Regulations and Standards of Safety and IT Security 23
2 2 Safety Basics 24
221 Glossary Referring to Latest EN 50126 24
222 Relationship of RAMS Components 25
223 What is RAMS(S)? 26
2 3 Railway Operation/Safety Referring to EN 50129 27
231 Safety Principles 28
232 Risk Analysis Process 30
233 Safety Case and Assessment (EN 50126 and EN 50129) 32
234 TSR (EN 50129 in Connection with EN 50128) 34
235 Methods 36
236 Example of Calculation of TFFR 37
2 4 Security Principles in Railway Operation/Security 39
3 Railway Operation Processes 41
3 1 Historical Background 41
3
Contents
3 2 Classification of Tracks, Stations and Signals 44
321 Classification of Tracks 44
322 The Role of Lineside Signals 45
323 Definitions of Stations and Interlocking Areas 46
324 Signal Arrangement for Double Track Operation 50
3 3 Movements with Railway Vehicles 51
331 Train Movements 51
332 Shunting Movements 52
3 4 Principles of Train Separation 54
341 Signalled Fixed Block Operation 55
342 Cab Signal Operation 58
343 Non Signal-controlled Operation 61
3 5 Dispatching Principles 61
351 Decentralised Operation 61
352 Centralised Traffic Control 62
353 Control Centres 63
354 Automation Technologies 64
3 6 Special Operating Situations 65
361 Handling of Signal Failures 65
362 Temporary Track Closures 66
363 Non-shunting Vehicles 67
4 Interlocking Principles 69
4 1 Overview 69
411 Introduction 69
412 Basic Principles of Safeguarding a Train s Path 69
413 Protection of Trains by a Signal at Stop in Rear 70
4 2 Element Dependences 71
421 Classification 71
422 Coupled Elements 71
423 Unidirectional Locking 72
424 Simple Bidirectional Locking 73
425 Conditional Bidirectional Locking 73
4 3 Routes 74
431 Introduction 74
432 Extension of Routes and Related Speed Restrictions 75
Contents
433 Basic Route Locking Functions 78
434 Route Selection 83
435 Flank Protection 84
436 Overlaps and Front Protection 87
437 Route Elements in the Start Section 90
438 Life Cycle of Routes 92
439 Principles of Route Formation in the Track Layout 97
4 3 10 Shunting Routes 99
4 3 11 Automation of Route Operation 101
4 4 Block Dependences 102
441 Introduction 102
442 Geographical Assignment of Block Sections 104
443 Overlaying Block and Route Interlocking Systems 105
444 Classification of Block Systems 105
445 Process of Block Working in Token Block Systems 107
446 Process of Block Working in Tokenless Block Systems 108
447 Locking Functions of Tokenless Block Systems 110
448 Returning Movements 112
4 5 Degraded Mode Operation 113
451 Purpose 113
452 Safety in Degraded Mode Operation 114
453 Auxiliary Route Release 115
454 Bypassing Defective Elements when Setting a Route 116
455 Degraded Mode Operation in Manual Block Systems 117
456 Degraded Mode Operation in Automatic Block Systems 117
457 Several Trains between Two Signals 119
458 Clearance Check for Absolute Block and Station Areas 120
459 Technical Failure of Short Duration 121
5 Detection 123
5 1 Requirements and Methods of Detection 123
511 Introduction 123
512 Types of Objects 123
513 Safety Requirements 124
514 Detection Purposes 124
5 2 Technical Means of Detection 127
521 Classification 127
5
Contents
5 2 2
5 2 3
5 2 4
5 2 5
5 2 6
5 2 7
5 3
5 3 1
5 3 2
5 3 3
5 3 4
5 3 5
5 3 6
5 3 7
5 4
5 4 1
5 4 2
5 4 3
5 4 4
5 5
5 5 1
5 5 2
Spot Wheel Detectors
Linear Wheel and Axle Detectors
Area Detectors for Vehicles and External Objects
Three-dimensional Detection
Systems with Active Reporting from the Train
End of Train (EOT) Detection Systems
128
134
135
142
144
147
Track Circuits
Basic Structure and Function of Track Circuits 149
Geometrical Assembly of Track Circuits 151
Treatment of Traction Return Currents 153
Additional Functions of Track Circuits 157
Immunity against Foreign Currents 158
Electrical Parameters and Dimensioning 159
Application of the Types of Track Circuits 161
Axle Counters 168
Basic Structure and Function of Axle Counters 168
Rail Contact 169
Digitiser and Evaluator 170
Treatment of Counting Errors 173
Comparison of Track Circuits and Axle Counters 177
Advantages and Disadvantages 177
Application 178
6 Movable Track Elements
181
6 1
6 1 1
6 1 2
6 1 3
6 1 4
6 1 5
6 2
6 3
6 4
6 4 1
6 4 2
6 4 3
Types of Movable Track Elements and their Geometry Overview 181
Simple Points hoi
Other Solutions for Connection of Tracks
Arrangements of Several Movable Track Elements Derailing and Protective Devices
Safety Requirements at Movable Track Elements
Track Clear Detection at Points and Crossing
Point Machines „ „„
Overview Qn
Electric Point Machines
Supervision of Point Position on the Example of SP-6
6
Contents
6 5 Point Locking Mechanisms 196
651 External Locking Mechanism: Clamp Lock 196
652 Internal Locking Mechanism 197
653 Mechanical Key Lock 198
6 6 Circuitry of Point Operation and Control in Relay Technology 198
661 General Overview 198
662 Example with Type N Relays: Russian Five-wire Point Circuitry 200
663 Example with Type C Relays: GS II DR (Germany) 202
6 7 Point Diagnostics 209
671 Purpose and Principle 209
672 Date Capturing 209
673 Data Evaluation 210
674 Example for Electrical Supervision of EPM 211
7 Signals 213
7 1 Requirements and Basic Classification 213
7 2 Signals with Filament Lamps 215
721 Structure of a Light Signal 215
722 Signal Units 216
723 Subsidiary Indicators 217
724 Control and Supervision of Signal Lamps 218
7 3 LED Signals 219
731 LED Development for Signalling 219
732 Distributed Light Source 220
733 Concentrated Light Source 222
734 Multicolour LED 222
735 State of the Art and Outlook 223
7 4 Optical Parameters 224
7 5 Retro-reflection of Passive Signal Boards 224
7 6 Principles of Signalling by Light Signals 225
761 Utilisation of Signal Colours 225
762 Stop Aspects 226
763 Signalling of Movement Authorities 227
764 Signalling of Speed Reductions 230
765 Combination of Main and Distant Signals 234
766 Shunting Signals 235
7
Contents
7 7 Redundancy and Degraded Mode Operation 235
7 8 Signal System Examples 236
781 German Mechanical and HA/’ Light Signals 233
782 Belgian Mechanical Signals 237
783 British Light Signals 238
784 OSZD Signals 240
785 Modern Dutch Signal System 241
786 German System 242
787 Signal System on Japanese Commuter Lines 243
788 NORAC Signals 244
8 Train Protection 247
8 1 Requirements, Classification and Conditions for Application 247
811 General Overview 247
812 Cab Signalling Functions 247
813 Supervision Functions 249
814 Intervention Functions 250
815 Role in the Railway Operation Process 251
816 Automation of Train Operation 251
8 2 Technical Solutions for Data Transmission 253
821 Overview of Forms of Transmission 253
822 Spot Transmission 254
823 Linear Transmission 257
8 3 Particular Systems 259
831 Classification of Systems 259
832 Group 1: Systems with Intermittent Transmission and without Braking Supervision 259
833 Group 2: Systems with Intermittent Transmission at Low Data Volume
and with Braking Supervision 263
834 Group 3: Systems with Continuous Transmission of Signal Aspects
by Coded Track Circuits 267
835 Group 4: Systems with Intermittent Transmission at High Data Volume
and Dynamic Speed Supervision 275
836 Group 5: Systems with Continuous Transmission at High Data Volume
and Dynamic Speed Supervision 278
8 4 ETCS 280
841 History and European Standardisation 280
842 Application Levels 284
843 Technical Components 294
844 Functional Concepts 296
8
Contents
845 Operation Modes 302
846 Data Structure 304
8 5 CBTC 304
851 History of Development and Deployment 304
852 Technical Components 305
853 Functional Concepts 310
854 Challenges and Prospects 312
8 6 PTC 313
861 System Overview 313
862 Types of PTC Systems 314
9 Interlocking Machines 321
9 1 Classification 321
9 2 Mechanical Interlocking 322
921 Historical Development 322
922 System Safety in Mechanical Interlocking 322
923 Structure of Mechanical Interlocking Systems 323
924 Example: British Origin Mechanical Interlocking 324
925 Example: German Type Einheit 327
9 3 Relay Interlocking 332
931 Historical Development 332
932 System Safety in Relay Interlocking 332
933 Design of Relay Interlocking Systems 336
934 Example: SGE 1958 (Britain) 339
935 Example: SpDrS 60 (Germany) 340
936 Example: UBRI (Russia) 345
9 4 Electronic Interlocking 349
941 Historical Overview 349
942 System Safety in Electronic Interlocking 350
943 Hardware Structure 351
944 Geographical Distribution 353
945 Software Structure 354
946 Operation Control 358
947 Communications 358
948 Outdoor Cabling of Field Elements 364
949 Energy Supply 367
9 4 10 Local-electrical Operated Point Switches (LOPS) 370
9
Contents
9 5 Hybrid Technologies 371
951 Hybrid Mechanical and Electrical/Pneumatic/Hydraulic Forms 371
952 Hybrid Relay and Electronic Forms 372
9 6 Technical Diagnostics 373
961 Methods of Maintenance 373
962 Diagnostic Tasks 373
963 Development Stages of Technical Diagnostics 373
964 Modern Diagnostic of Railway Signalling Equipment 376
965 Future Development of Diagnostic Systems 378
10 Block Systems 379
10 1 Classification 379
10 2 Safety Overlays for Systems with the Staff Responsible for Safety 380
10 3 Token Block 381
10 3 1 Overview 381
10 3 2 Electric Token Block 381
10 4 Tokenless Manual and Semi-automatic Block 382
10 4 1 Overview 382
10 4 2 Manual Block Siemens amp; Halske 383
10 4 3 Relay Block RB II 60 386
10 4 4 Relay Block RPB GTSS 388
10 4 5 Japanese Electronic Block for Secondary Lines (COMBAT) 389
10 5 Automatic Block 390
10 5 1 Overview 390
10 5 2 Number of Tracks and Traffic Directions 393
10 5 3 Block Sections 394
10 5 4 Communication between Block Points and Interlockings 394
10 5 5 Example: North American Automatic Block Signalling System 395
10 6 Centralised Systems for Safety on Open Lines 396
10 6 1 Overview 396
10 6 2 Centralised Block Systems for Secondary Lines 398
10 6 3 Radio Electronic Token Block 399
10 6 4 Open Line Controlled from Neighbouring Interlockings 400
10 6 5 Train Control Systems for High Speed Lines 401
10 7 Moving Block Systems
402
Contents
11 Remote Control and Operation Technology 405
11 1 The Objectives of Remote Control and Monitoring 405
11 2 Remote Control and Monitoring 406
11 2 1 Types of Dispatcher Control/Monitoring 406
11 2 2 Command Output 408
11 3 Timetable Scheduling 409
11 3 1 Timetable Preparation 409
11 3 2 Timetable Optimisation 410
11 4 Technical Solutions for CTC 410
11 4 1 Basic Structure of CTC System 410
11 4 2 Types of Communication between CTC and Stations 410
11 4 3 CTC Integration with Relay Interlockings 412
11 4 4 CTC Integration with Hybrid (Relay-electronic) Interlockings 414
11 4 5 CTC Integration with ETCS 415
11 5 Examples for Operation Control Systems 416
11 5 1 Centralised Traffic Control in USA 416
11 5 2 Centralised Traffic Control in Germany 420
11 5 3 Centralised Traffic Control in Russia 423
12 Safety and Control of Shunting and Marshalling 427
12 1 Principles of Marshalling of Trains 427
12 2 Parts of Marshalling Yards and their Function 428
12 2 1 General Structure and Functioning 428
12 2 2 Layout Variants 429
12 2 3 Automation 430
12 3 Control of Marshalling Yards 431
12 3 1 Introduction 431
12 3 2 Retarders 432
12 3 3 Handling Systems for Freight Wagons 436
12 3 4 Points 437
12 3 5 Sensors 437
12 3 6 Track Clear Detection 439
12 3 7 Flange Lubricating Devices 439
12 3 8 Yard Management Systems 439
11
Contents
13 Level Crossings 445
13 1 Requirements and Basic Classification 445
13 2 Static Roadside Signs 446
13 3 Passive Level Crossings 447
13 4 Active Level Crossings 451
13 4 1 Overview 451
13 4 2 Dynamic Roadside Safeguarding 452
13 4 3 Activation and Deactivation of Level Crossings 456
13 4 4 Supervision of Level Crossings 460
13 4 5 Possibilities of Degraded Mode Operation 465
13 4 6 Combination with Road Junctions 466
13 5 Removal of Level Crossings 468
14 Hazard Alert Systems 469
14 1 Hazard in Railway Systems 470
14 1 1 Safety Related Hazards 471
14 1 2 Security Related Hazards 474
14 2 Solutions for Hazard Detection 474
14 2 1 Ways of Inspection 475
14 2 2 Fault States to Monitor 476
14 2 3 Integrated Approach of Inspection 476
14 2 4 Extract of Available Technologies and Products 478
14 3 Aspects of Application 490
14 3 1 Network Oriented Positioning of Wayside Train Monitoring Systems (WTMS) 490
14 3 2 Operational Handling Options 491
14 3 3 Cost-benefit Analysis of Wayside Train Monitoring Systems 493
14 3 4 Demand for a Generic Approach for Data Exchange 494
15 Future of Signalling 497
15 1 Today’s Situation 497
15 2 Decentralised Interlocking 498
15 3 Signals 499
15 4 Track Clear Detection Substituted by Train Integrity 499
12
Contents
15 5 Maintenance 499
15 6 New Concept of Safeguarding Vehicle Movements 500
15 7 Security 500
References 501
Glossary 511
Explanation of Symbols in Track Layout Schemes 531
The Authors 533
Index 541
Advertisements 552
|
any_adam_object | 1 |
author2 | Theeg, Gregor 1977- Vlasenko, Sergej |
author2_role | edt edt |
author2_variant | g t gt s v sv |
author_GND | (DE-588)139451072 (DE-588)1186292784 |
author_facet | Theeg, Gregor 1977- Vlasenko, Sergej |
building | Verbundindex |
bvnumber | BV046264019 |
classification_rvk | ZO 5100 ST 620 ZO 5430 ZI 6480 |
ctrlnum | (OCoLC)1136352383 (DE-599)DNB1191393402 |
discipline | Informatik Bauingenieurwesen Wirtschaftswissenschaften Verkehr / Transport |
edition | 3rd edition |
format | Book |
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id | DE-604.BV046264019 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:39:57Z |
institution | BVB |
isbn | 9783962451691 3962451692 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-031641963 |
oclc_num | 1136352383 |
open_access_boolean | |
owner | DE-210 DE-83 DE-473 DE-BY-UBG DE-526 DE-92 |
owner_facet | DE-210 DE-83 DE-473 DE-BY-UBG DE-526 DE-92 |
physical | 552 Seiten Illustrationen, Diagramme 25 cm Enthält: 1 Online-Ressource |
publishDate | 2020 |
publishDateSearch | 2020 |
publishDateSort | 2020 |
publisher | PMC Media House GmbH |
record_format | marc |
spelling | Railway signalling and interlocking international compendium editors: Dr.-Ing. Gregor Theeg ; Dr.-Ing. Sergej Vlasenko ; authors: Dr.-Ing. Enrico Anders [und 26 weitere] 3rd edition Leverkusen PMC Media House GmbH 2020 552 Seiten Illustrationen, Diagramme 25 cm Enthält: 1 Online-Ressource txt rdacontent n rdamedia nc rdacarrier Zugsicherung (DE-588)4191115-5 gnd rswk-swf Eisenbahnsignalanlage (DE-588)4515524-0 gnd rswk-swf Stellwerk (DE-588)4126363-7 gnd rswk-swf Mixed media product Fachpublikum/ Wissenschaft Railway signal technicians, Operators, manufacturers ab 20 bis 99 Jahre CBTC ETCS PTC railway Interlocking signalling technology train protection railway signalling 1786: Hardcover, Softcover / Wirtschaft/Einzelne Wirtschaftszweige, Branchen Eisenbahnsignalanlage (DE-588)4515524-0 s DE-604 Stellwerk (DE-588)4126363-7 s Zugsicherung (DE-588)4191115-5 s Theeg, Gregor 1977- (DE-588)139451072 edt Vlasenko, Sergej (DE-588)1186292784 edt HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031641963&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Railway signalling and interlocking international compendium Zugsicherung (DE-588)4191115-5 gnd Eisenbahnsignalanlage (DE-588)4515524-0 gnd Stellwerk (DE-588)4126363-7 gnd |
subject_GND | (DE-588)4191115-5 (DE-588)4515524-0 (DE-588)4126363-7 |
title | Railway signalling and interlocking international compendium |
title_auth | Railway signalling and interlocking international compendium |
title_exact_search | Railway signalling and interlocking international compendium |
title_full | Railway signalling and interlocking international compendium editors: Dr.-Ing. Gregor Theeg ; Dr.-Ing. Sergej Vlasenko ; authors: Dr.-Ing. Enrico Anders [und 26 weitere] |
title_fullStr | Railway signalling and interlocking international compendium editors: Dr.-Ing. Gregor Theeg ; Dr.-Ing. Sergej Vlasenko ; authors: Dr.-Ing. Enrico Anders [und 26 weitere] |
title_full_unstemmed | Railway signalling and interlocking international compendium editors: Dr.-Ing. Gregor Theeg ; Dr.-Ing. Sergej Vlasenko ; authors: Dr.-Ing. Enrico Anders [und 26 weitere] |
title_short | Railway signalling and interlocking |
title_sort | railway signalling and interlocking international compendium |
title_sub | international compendium |
topic | Zugsicherung (DE-588)4191115-5 gnd Eisenbahnsignalanlage (DE-588)4515524-0 gnd Stellwerk (DE-588)4126363-7 gnd |
topic_facet | Zugsicherung Eisenbahnsignalanlage Stellwerk |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031641963&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT theeggregor railwaysignallingandinterlockinginternationalcompendium AT vlasenkosergej railwaysignallingandinterlockinginternationalcompendium |