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GB/T 28029.5-2020 English PDF

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GB/T 28029.5-2020: Electronic railway equipment - Train communication network (TCN) - Part 2-4: TCN application profile
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GB/T 28029.5-20201449 Add to Cart 9 days Electronic railway equipment - Train communication network (TCN) - Part 2-4: TCN application profile Valid

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TB/T 2834   GB/T 28029.13   GB/T 28029.11   GB/T 28029.1   

Basic data

Standard ID: GB/T 28029.5-2020 (GB/T28029.5-2020)
Description (Translated English): Electronic railway equipment - Train communication network (TCN) - Part 2-4: TCN application profile
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: S70
Classification of International Standard: 45.060
Word Count Estimation: 78,70
Date of Issue: 2020-03-06
Date of Implementation: 2020-10-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 28029.5-2020: Electronic railway equipment - Train communication network (TCN) - Part 2-4: TCN application profile


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Electronic railway equipment--Train communication network (TCN)-Part 2-4. TCN application profile ICS 45.060 S70 National Standards of People's Republic of China Rail Transit Electronic Equipment Train Communication Network (TCN) Part 2-4. TCN Application Specification (IEC TS61375-2-4..2017, MOD) Released on 2020-03-06 2020-10-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee

Contents

Foreword Ⅲ Introduction Ⅵ 1 Scope 1 2 Normative references 2 3 Terms, definitions, abbreviations and conventions 2 3.1 Terms and definitions 2 3.2 Acronyms 4 3.3 Convention 5 4 Distributed Train Application 5 4.1 Overview 5 4.2 Functional interface for remote control 5 4.3 Common Application Architecture 6 4.4 Architecture Model 7 4.5 Allocation of master control function and slave control function 8 4.6 Communication process 8 5 Addressing and data format 8 5.1 Overview 8 5.2 Functional data unit 10 6 Application Mode 17 6.1 Overview 17 6.2 Train mode function 17 7 Application Specification for Car Door System 34 7.1 Scope 34 7.2 Decomposition architecture of door system 34 7.3 Door types 35 7.4 Car door application function decomposition system 37 7.5 Car door application degraded mode 38 7.6 Special mode for door application 38 7.7 Car door system interaction 38 7.8 Operating optional side 45 7.9 Car door application behavior 45 Appendix A (Normative Appendix) Definition of Protocol Data 60 References 70

Foreword

GB/T 28029 "Train Communication Network (TCN) for Rail Transit Electronic Equipment" is divided into the following 12 parts. --- Part 1. Basic structure; --- Part 2-1. Stranded Train Bus (WTB); --- Part 2-2. Conformance Test of Wire Train Bus (WTB) --- Part 2-3. TCN Communication Protocol; --- Part 2-4. TCN Application Specification; --- Part 2-5. Ethernet Train Backbone (ETB); --- Part 2-6. Vehicle-ground communication; --- Part 2-7. Radio-based Wireless Train Backbone Network (WLTB); --- Part 3-1. Multifunctional Vehicle Bus (MVB); --- Part 3-2. Multi-function vehicle bus (MVB) conformance test; --- Part 3-3. CANopen Marshalling Network (CCN); --- Part 3-4. Ethernet Marshalling Network (ECN). This part is part 2-4 of GB/T 28029. This section was drafted in accordance with the rules given in GB/T 1.1-2009. This part uses the redrafting method to modify the use of IEC TS61375-2-4..2017 "railway electronic equipment train communication network (TCN) Part 2-4. TCN Application Specification. Compared with IEC TS61375-2-4..2017, this part has structural adjustments, adding 3.3.6, adjusting 7.1 to Chapter 7, and other articles The numbers are modified sequentially. There are technical differences between this part and IEC TS61375-2-4..2017, and the terms involved in these differences have been adopted on the outside page The vertical single line (|) in the marginal position is marked. The specific technical differences and the reasons are as follows. --- Added the content of "Regulations" in the scope to meet the requirements of GB/T 1.1 (see Chapter 1). --- With regard to normative quotation documents, this part has been adjusted with technical differences to adapt to China's technical conditions and adjustments The situation is reflected in Chapter 2 "Regulatory Reference Documents", with specific adjustments as follows. ● Replace IEC 61375-1 with GB/T 28029.1 modified to adopt international standards (see 3.1, 4.3, 7.1); ● Replace IEC 61375-2-1 (see 3.3.4) with GB/T 28029.2 modified to adopt international standards; ● Replace IEC 61375-2-3 (see 3.1.13, 4.2, 5.1) with GB/T 28029.4 modified to adopt international standards; ● Added reference to GB/T 16262 (see 3.3.1); ● Added reference to GB/T 16831 (see A.1); ● Added reference to GB/T 28029.6 (see 6.1). --- Deleted some terms and definitions (see 3.1.1, 3.1.2, 3.1.3, 3.1.4 of IEC TS61375-2-4..2017). --- Added the abbreviation "CTCS"; deleted the abbreviations "DB, DDU, ETCS, SNCF" (see 3.2). --- Modify the speed limit value, change "turn off the fan and speed limit 3km/h" to "turn off the fan and speed limit 5km/h" Situation (see 6.2.5.9, 6.2.5.9 of IEC TS61375-2-4..2017). This section also made the following editorial changes. --- Deleted the notes in Table 1 in 5.2.3 because E, F, and G of IEC TS61375-2-4..2017 Table 1 have already communicated to point to point The description is clear (see 5.2.3 of IEC TS61375-2-4..2017). --- Modify "based on channel interoperability, channels should be divided into the following two groups. e) f)" to "based on channel interoperability, pass The Tao should be divided into the following two groups. a) b) "(see 5.2.3, 5.2.3 of IEC TS61375-2-4..2017). --- Amend the "distribution of train mode functional components based on the general application architecture (see 4.1)." To "based on the general application architecture (see 4.3) The distribution of functional components of the train mode is shown in Figure 17 "(see 6.2.1, 6.2.1 of IEC TS61375-2-4..2017). --- Modified the "ID reader is available" in 6.2.4.4.1, which is not applicable to China. China adopted the key and deleted the "ID reader is available" Use ", and adjust the corresponding number (see 6.2.4.4.1, IEC TS61375-2-4..2017 6.2.4.4.1). --- Removed the ETCS example mentioned in 6.2.4.5.1, which is applicable to trains in Europe and not applicable to China (see IEC TS61375- 2-4. 6.2.4.5.1 of.2017). --- According to the application of domestic time, add the note in 6.2.4.8.1. "The mechanic room can only release all train levels related to services. Instructions (such as air-conditioning control). ”This note is also added in 6.2.5.3, 6.2.5.9, 6.2.5.10 (see 6.2.4.8.1, 6.2.5.3, 6.2.5.9, 6.2.5.10). --- Modify "for example. SNCF/T renitalia. Vtarget = 3km/h, DB. Vtarget = (1.5 ± 0.5) km/h" to "for example, Vtarget = 5km/h ”to meet China's national conditions (see 6.2.5.9, 6.2.5.9 of IEC TS61375-2-4..2017). --- Modified the description of the parking mode and the drag mode in 6.2.6 Table 4 and changed "for example to allow simple check at HMI" to "When the train is stationary and the battery main switch is off", modify "for example, to allow inspection and test procedures via the Web" to be "Train 'towing as a wagon'" because of errors in IEC TS61375-2-4..2017 (see 6.2.6, IEC TS61375-2-4..2017 6.2.6). --- Modified the median number in 6.2.6 Table 5 because IEC TS61375-2-4..2017 is wrong; modify Table 5 "B11 ~ B12" to "B11 ~ B15" because of the error in IEC TS61375-2-4..2017 (see 6.2.6, 6.2.6 of IEC TS61375-2-4..2017). --- Revised the guidelines in the illustration in 7.2, because IEC TS61375-2-4..2017 is wrong, the "Figure 22 example Structure (see 4.1) of the door system component distribution "to" based on the general application architecture (see 4.3) of the door system component distribution see Figure 22 "(see 7.2, 7.1.2 of IEC TS61375-2-4..2017). --- Modified 7.3, IEC TS61375-2-4..2017 cited UIC556, it is not recommended. Will "because of the use case in UIC556 It may come from the toilet system without closed waterway, this section does not consider the toilet door. "To" This section does not consider unlinked Car doors, such as toilet doors, etc. "(see 7.3, 7.1.3 of IEC TS61375-2-4..2017). --- Modified 7.4, IEC TS61375-2-4..2017 cited UIC556, it is not recommended. Will "derive from the work of UIC556 The functional breakdown structure of the door application illustrated in the scenario is shown in Table 6. "Revised to" The functional breakdown structure of the door application is shown in Table 6. " (See 7.4, 7.1.4 of IEC TS61375-2-4..2017). --- Modified 7.7.12, IEC TS61375-2-4..2017 description has nothing to do with DCU local trigger, deleted "DCU local trigger (See Table 13) provides a reference for describing the application behavior of the door. "(See 7.7.12, 7.1.7.12 of IEC TS61375-2-4..2017). --- Modified 7.8, IEC TS61375-2-4..2017 defines the wrong reference clause, the "defined in 7.1.5 with parameter 'side' The trigger should allow optional side operation. "Modified to" 7.7.2 and 7.7.5 defined with the parameter 'side' trigger response Many side operations are possible. "(See 7.8, 7.1.8 of IEC TS61375-2-4..2017). --- Modified the description of 7.9.7 "Entry Door", IEC TS61375-2-4..2017 is wrong, and "Table 30 and Table 31 describe the entrance door Group the triggers and operations of the DCU state machine. "Revised to" Tables 30 and 31 describe the grouping of adjacent interconnecting gates (end gates) Trigger and operation of DCU state machine. "(See 7.9.7, 7.1.9.7 of IEC TS61375-2-4..2017). --- Modify the description of "Group DCU" in 7.9.9, because IEC TS61375-2-4..2017 is wrong, replace "Table 36, Table 37 and Table 38 Describes the triggers, conditions and operations of the marshalling DCU state machine "to" triggers, conditions and operation of the train DCU state machine See Table 36, Table 37 and Table 38 "for operation (see 7.9.9, 7.1.9.9 of IEC TS61375-2-4..2017). --- Modified the torque unit in Table A.1, and changed "m/s3" to "Nm" because IEC TS61375-2-4..2017 is wrong Table A.1, IEC TS61375-2-4..2017 Table A.1). --- Modify the longitude "DDMMSS.SS" in Table A.2 to "DDDMMSS.SS" (see Table A.2, IEC TS61375-2-4..2017 Table A.2). --- Modify the reference standard of the function identifier structure in A.2; delete the "function identifier based on EN15380-2 structure, because there is no Equivalent IEC standards, cited here for reference only "and a column of EN15380-2 in Table A.3 (see A.2, IEC TS61375-2-4. A.2 of.2017). --- Adjusted some column numbers (see 5.2.9.1, 5.2.9.2, 6.2.4.4.1, 6.2.4.5.1, 6.2.5.10). Please note that some content of this document may involve patents. The issuer of this document does not assume responsibility for identifying these patents. This part is proposed by the State Railway Administration. This part is under the jurisdiction of the National Technical Committee for Standardization of Traction Electrical Equipment and Systems (SAC/TC278). This section was drafted by. CRRC Zhuzhou Electric Locomotive Research Institute Co., Ltd., China Railway Science Research Institute Group Co., Ltd. rolling stock Research Institute, CRRC Changchun Rail Bus Co., Ltd., CRRC Zhuzhou Electric Locomotive Co., Ltd., CRRC Nanjing Puzhen Vehicle Co., Ltd., CRRC Che Tangshan Locomotive Co., Ltd. The main drafters of this section. Huang He, Tang Changchun, Zhu Guangchao, Chang Zhenchen, Peng Dongliang, Liu Gui, Qi Yuling, Guo Yong.

Introduction

This section aims to. --- Establish complete communication requirements for all train applications and list them in standard form; --- Provide guidance for technical solutions for communication between application software on the same or different formations, which are train components And connected to the relevant marshalling network and train backbone network; --- Define the application specifications for the train functions involved in this section. Rail Transit Electronic Equipment Train Communication Network (TCN) Part 2-4. TCN Application Specification

1 Scope

This part of GB/T 28029 stipulates the application specifications of the train communication network, in order to achieve the application software through GB/T 28029.1 The defined marshalling network communicates with the train backbone network defined in GB/T 28029.6. This section specifies the requirements for the application of communication between the marshalling network and the train backbone network via data transmission equipment of the marshalling network. This section applies to applications on trains, that is, application specifications that include the functions of train control and monitoring systems (TCMS). Application Regulation Approximately based on the TCN communication system used for data communication between train formations. This part provides a protocol based on GB/T 28029.4 communication protocol. Data interface for TCMS function parameters and addresses. This section applies to locomotives that require interoperable interlocking and unlinking. When the supply and demand parties reach an agreement, this section can also be used to close Trains and multi-unit trains. Complying with the train communication network technology defined in this section can achieve interoperability between train groups. The data communication system within the group does not belong to the scope of this part, and is only given as an example of TCN solution. In any case, build The compatibility certificate between the proposed train backbone network and the marshalling network should be given by the supplier. The special backup function used when the train backbone network is in a degraded state does not belong to this category. Figure 1 GB/T 28029.5TCN application protocol of link function and application As shown in Figure 1, this part aims to create a general model to describe in a functional way the functions of TCMS functions such as "control of doors" remote control. This part directly quotes GB/T 28029.4, the communication protocol includes data transmission on the Ethernet train backbone network and specifies The functions between groups (such as locomotives, multi-unit trains and control trailers) and the rules for establishing and processing the necessary data messages are established.
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