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GB/T 29618.2-2017Field device tool (FDT) interface specification -- Part 2: Concepts and detailed description (English PDF)

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Issued by

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China

Level / Type

National · Recommended

Issue date

July 31, 2017

Implementation date

February 1, 2018

Scope

GB/T 29618.2-2017 (Field device tool (FDT) interface specification -- Part 2: Concepts and detailed description) is available as an English-translated PDF.

GB/T 29618.2-2017 — This part of GB/T 29618 explains the general principles of field device tools concepts. The principles of this section apply to a variety of industrial applications For example, engineering systems, configuration programs, monitoring and diagnostic applications. This section specifies the common objects, common object behavior and the interaction between common objects, which are the basis of FDT.

Document preview — GB/T 29618.2-2017

National Standard of the People's Republic of China

ICS
25.040
Classification
N 10
Replacing
GB/T 29618.2-2013

Issued by: General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China

Contents

  • Foreword
  • Introduction
  • 1 Scope
  • 2 Normative references
  • 3 Terms and definitions, symbols and abbreviations, conventions
  • 3.1 Terms and definitions

Foreword

GB/T 29618 "Field Device Tool (FDT) Interface Specification" is divided into the following sections.

--- Part 1. Overview and guidelines;

--- Part 2. Concept and detailed description;

--- Part 301. Communication profile integrated FF field bus specification;

--- Part 302. Communication rules integrated universal industrial agreement;

--- Part 306. Communication rules integrated INTERBUS fieldbus specification;

--- Part 309. Communication profile integrated addressable remote sensor high-speed channel;

--- Part 315. Communication line regulation integrated MODBUS field bus specification;

--- Part 41. Object model lineage integration common object model;

--- Part 42. Object model rules integrated common language infrastructure;

--- Part 515. Common object model of communication to achieve MODBUS field bus specification

--- Part 51-10. Common Object Model Communication to achieve FF Fieldbus Specification;

--- Part 51-20. Common object model of communication to achieve universal industrial agreement;

Part 51-60. General object model communication to achieve INTERBUS fieldbus specification;

--- Part 51-90. Common object model of communication to achieve IEC 61784CPF9;

--- Part 51-150. Common object model of communication to achieve IEC 61784CPF15;

--- Part 52-10. General language infrastructure to achieve communication FF fieldbus specification;

--- Part 52-20. Common language infrastructure to achieve universal industrial communication protocol;

--- Part 52-31. Communication of the common language infrastructure IEC 61784CP3/1 and CP3/2;

--- Part 52-32. Communication of common language infrastructure IEC 61784CP3/4, CP3/5 and CP3/6;

--- Part 52-90. Common language infrastructure to achieve communication EC61784CPF9;

--- Part 52-150 of the General Language Infrastructure Communication IEC 61784CPF15;

--- Part 61. Generic object model device type manager style guide;

--- Part 62. Field Device Tool (FDT) common language infrastructure style guide.

This section GB/T 29618 Part 2.

This section drafted in accordance with GB/T 1.1-2009 given rules.

This Part replaces GB/T 29618.2-2013 "Field Device Tool (FDT) Interface Specification Part 2. Concept and detailed description",

This section compared with GB/T 29618.2-2013 In addition to editorial changes, the main technical changes are as follows.

--- The range has been adjusted accordingly (see Chapter 1,.2013 Chapter 1);

--- Normative references have been adjusted accordingly (see Chapter 2,.2013 Chapter 2);

--- Added the term "sub DTM" (see 3.1.1);

--- Added the term "parent DTM" (see 3.1.4);

--- Increased agreement "UML use" (see 3.3.1);

--- Removed the BTM item in Table 1, which indicated that the channel item was adjusted accordingly (see Table 1 in Table 1,.2013).

--- Added an overview of the beginning of the framework application (see 4.2.2.1);

--- Increased system communication (see 4.2.2.2);

--- Added DTM Business Logic Overview (see 4.2.3.1);

--- Added DTM category and the beginning of the overview, communication DTM (COMM-DTM), DTM equipment, gateway DTM, composite set

DTM, Module DTM, Block Type Manager (BTM);

--- Added DTM functions, command functions and static functions (see 4.2.3.3);

--- Increased identification and specific content (see 4.5);

--- Increased system and FDT topology (see 4.6);

--- Increased FDT communication (see 4.7);

--- Added Figures 7, 8, 9, 10 (see 4.2.3.2), Figure 12, Figure 13, Figure 14 (see 4.2.4), Figure 20, Figure 21

Figure 22 (see 4.9), Figure 23, Figure 24 (see 4.11), Figure 26, Figure 27, Figure 28, Figure 29, Figure 30 and Figure 31

--- Removed the PLC overview of the beginning of the PLC tool support document chapter, PLC process image changes (see.2013 version

6.4);

--- Removed part of ReadDataFromDevice service (see.2013 version 7.2.12.4);

--- Deleted the process of image authentication related FA services (see.2013 version 7.7.7).

This section uses the translation method identical with IEC 62453-2.2016 "Field Device Tool (FDT) Interface Specification Part 2. Concepts and

Detailed description "(in English).

The documents of our country that are consistent with the corresponding international documents that are normative references in this section are as follows.

--- Part 1 GB/T 15969.1-2007 programmable logic controller General Information (IEC 61131-1.2003, IDT);

--- Part 2. Equipment requirements and testing (IEC 61131-2.2007, IDT); --- GB/T 15969.2-2008;

Programmable logic controller - Part 3. Programming language (IEC 61131-3.2002, IDT);

GB/T 15969.4-2007 Programmable controller Part 4. User guide (IEC 61131-4.2004, IDT);

--- GB/T 15969.5-2002 programmable logic controller Part 5. Communication (idtIEC 61131-5.2000);

--- Part 6. Functional safety (IEC 61131-6.2012, IDT) --- GB/T 15969.6-2015;

--- GB/T 15969.7-2008 Programmable controller Part 7. Fuzzy control programming (IEC 61131-7.2000,

IDT);

--- GB/T 15969.8-2007 Programmable controller Part 8 - Programming language application and implementation guidelines (IEC /TR

61131-8.2003, IDT);

--- GB/T 29618.301-2015 Field Device Tool (FDT) Interface Specification Part 301. Communication Profile Integration FF

Fieldbus specification (IEC 62453-301.2009, IDT);

--- GB/T 29618.302-2013 Field Device Tool (FDT) Interface Specification Part 302. Communication Profile Integration General

Industrial Agreement (IEC 62453-302.2009, IDT);

--- GB/T 29618.306-2017 Field Device Tool (FDT) Interface Specification Part 306. Communication Profile Integration

INTERBUS Fieldbus Specification (IEC 62453-306 Ed. 1.0.2009, IDT);

--- GB/T 29618.309-2013 Field Device Tool (FDT) Interface Specification Part 309.

Remote Sensor High Speed Channel (IEC 62453-309.2009, IDT);

--- GB/T 29618.315-2013 Field Device Tool (FDT) Interface Specification Part 315. Communication Profile Integration

MODBUS Fieldbus Specification (IEC 62453-315.2009, IDT).

This part is proposed by China Machinery Industry Federation.

This part of the National Industrial Process Measurement and Control Standardization Technical Committee (SAC/TC124) centralized.

This part of the drafting unit. Southwest University, Mechanical Industry Instrumentation Technology and Economy Institute, Chongqing Chuan Yi Automation Co., Ltd.

Division, Shanghai Automation Instrumentation Co., Ltd., Rockwell Automation (China) Co., Ltd., Zhejiang University Institute of Intelligent Systems and Control, Suzhou

Software Co., Ltd. of the United States, Heights (Shanghai) Automation System Co., Ltd., Schneider Electric (China) Co., Ltd.

Introduction

This section provides interface specifications for developers of FDT (Field Device Tool) components, FDT components for client/server architecture

Functional control and data access. This section is the result of analysis and design in the development of standard interfaces. These standard interfaces are easy to multiple

Manufacturers develop servers and clients that seamlessly interoperate.

Integrating field devices into the control system requires some additional tasks. In addition to the need for fieldbus specific tools and equipment specific

Tools, you need to integrate these tools into higher-level system-wide planning or engineering tools. In particular, in order to be heterogeneous in large scale

Of the control system (typically in the process industry), it is important to clearly define the relevant engineering interfaces that are easy to use.

Device-specific software components created in this section are called device type managers (DTMs). It passes the FDT defined in this section

Service that integrates all device-specific data, features, and business rules into the system.

The FDT/DTM method is open to all types of fieldbus and allows integration of various devices into heterogeneous systems.

Figure 1 shows the GB/T 29618.2 GB/T 29618 series standard structure in the position.

Figure 1 GB/T 29618 series of Part 2

Field Device Tool (FDT) Interface Specification

Part 2. Concept and detailed description

1 Scope

This part of GB/T 29618 explains the general principles of field device tools concepts. The principles of this section apply to a variety of industrial applications

For example, engineering systems, configuration programs, monitoring and diagnostic applications.

This section specifies the common objects, common object behavior and the interaction between common objects, which are the basis of FDT.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version applies to this article

Pieces. For undated references, the latest edition (including all amendments) applies to this document.

GB/T 29618.1-2017 Field Device Tool (FDT) Interface Specifications Part 1. Overview and Guidance (IEC 62453-1.

2016, IDT)

IEC 61131 (all parts) Programmable controllers (Programmablecontrollers)

IEC /T R62390.2005 Common automation equipment-Profileguideline

IEC 62453-3xy (all parts) Field Device Tool (FDT) Interface Specification Part 3xy. Field Communication Profile Integration

DeviceTool (FDT) interfacespecification-Part 3xy.Communicationprofileintegration)

3 Terms and definitions, symbols and abbreviations, conventions

3.1 Terms and definitions

GB/T 29618.1 defined and the following terms and definitions apply to this document.

3.1.1

Sub DTM childDTM

The DTM instance in the FDT project can be categorized by its relationship to the parent DTM.

Note Any DTM that uses FDT communication can be classified as a sub DTM (ie, device DTM, gateway DTM, module DTM, and BTM).

3.1.2

FDT version FDTversion

Relevant technical implementation-specific version of the organization.

Note. The FDT version is specified in IEC /T R62453-41 or IEC /T R62453-42.

3.1.3

Monolithic DTM monlithicDTM

The monolithic DTM represents the entire device that contains all of its modules.

Note. Other concepts that represent device modules are also included in this section, such as module DTM (ModuleDTM) and BTM.

3.1.4

Parent DTM parentDTM

The DTM instance in an FDT project can be categorized by its relationship to a sub DTM.

Note Any DTM that provides FDT communication can be classified as a parent DTM (eg, communication DTM, gateway DTM, composite device DTM).

......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — all pages — is available in the English PDF.

Referenced standards

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