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GB/T 38129-2019 English PDF

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GB/T 38129-2019: Smart factory - Safety and security control requirements
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 38129-2019439 Add to Cart 4 days Smart factory - Safety and security control requirements Valid

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Basic data

Standard ID: GB/T 38129-2019 (GB/T38129-2019)
Description (Translated English): Smart factory - Safety and security control requirements
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: N10
Classification of International Standard: 25.040.40
Word Count Estimation: 22,269
Date of Issue: 2019-10-18
Date of Implementation: 2020-05-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 38129-2019: Smart factory - Safety and security control requirements

---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.
Smart factory--Safety and security control requirements ICS 25.040.40 N10 National Standards of People's Republic of China Smart factory safety control requirements Published on.2019-10-18 2020-05-01 implementation State market supervision and administration China National Standardization Administration issued

Content

Foreword III Introduction IV 1 Scope 1 2 Normative references 1 3 Terms, definitions and abbreviations 1 3.1 Terms and Definitions 1 3.2 Abbreviations 3 4 General requirements 3 4.1 Intelligent Factory Level Model 3 4.2 Intelligent Factory Safety Control Model 4 4.3 General requirements 5 5 Personnel safety control 5 5.1 Personnel Competence and Qualification 5 5.2 On-site safety equipment 6 5.3 Personnel Safety Management System 6 5.4 Personnel Positioning 6 5.5 Dangerous Personnel Management 6 6 Material Safety Control 7 6.1 General requirements 7 6.2 Tank Area 7 6.3 Warehouse, storage room, gas cylinder room and storage cabinet 7 6.4 Major hazard sources 7 7 Process Safety Control 8 7.1 Process Safety Control Process 8 7.2 Hazard Identification 8 7.3 Risk Assessment 8 7.4 Protective layer 8 7.5 Safety related alarm management system 8 7.6 Safety related systems 8 7.7 Operation and Maintenance Requirements 9 7.8 Change and Revocation Requirements 9 7.9 Process Safety Management System 9 8 Equipment Safety Control 10 8.1 Basic requirements 10 8.2 Equipment Status Monitoring and Troubleshooting 10 8.3 Equipment Safety Management System 10 8.4 Equipment Corrosion Monitoring 10 9 Environmental Safety Control 11 9.1 General requirements 11 9.2 Workplace 11 9.3 Production equipment 11 9.4 Environmental Monitoring and Management 11 9.5 Environmental Inspection and Management 11 10 Information Security Control 11 10.1 Physical Access Control Requirements 11 10.2 Information Security Management Requirements 12 10.3 Safety Technical Requirements 12 Reference 15 Figure 1 Hierarchical model of the smart factory 4 Figure 2 Intelligent Factory Safety Control Model 5

Foreword

This standard was drafted in accordance with the rules given in GB/T 1.1-2009. This standard was proposed by the China Machinery Industry Federation. This standard is under the jurisdiction of the National Industrial Process Measurement Control and Automation Standardization Technical Committee (SAC/TC124). This standard was drafted. Mechanical Industry Instrumentation and Instrumentation Comprehensive Technology and Economic Research Institute, Zhejiang Zhongkong Technology Co., Ltd., China Science Shenyang Institute of Automation, China Petroleum & Chemical Corporation Qingdao Safety Engineering Research Institute, Honeywell (China) Co., Ltd., North Beijing Labor Protection Science Research Institute, Jiangsu Electronic Information Product Quality Supervision and Inspection Institute, Shenzhen Zhiruihua Technology Co., Ltd., China Power Engineering Consulting Group North China Electric Power Design Institute Co., Ltd., Tsinghua University, Huazhong University of Science and Technology, Beijing Kangjisen Technology Co., Ltd., Philippines Knicks (Nanjing) Intelligent Manufacturing Technology Engineering Co., Ltd., Beijing Guangli Nuclear System Engineering Co., Ltd. The main drafters of this standard. Meng Zouqing, Qiankun, Xu Yudong, Zhang Zhanfeng, Qi Jianghong, Li Yuming, Zhang Yabin, Ma Xinxin, Shi Xueling, Wang Minliang, Ren Junmin, Zhao Jinsong, Zhou Chunjie, Zhou Youzhen, Yan Bingjun, Yang Ming, Jiang Guojin, Zhu Jie, Zhu Minglu, Wang Wei, Jiang Wei, Zhang Weihua, Li Rongqiang, Li Chuankun, Wang Gang, Guo Miao, Liu Xiaojing.

Introduction

Smart factories are the core unit of intelligent manufacturing, covering a wide range of fields and complex and diverse types. Intelligent technology brings rare achievements to the manufacturing industry Exhibition opportunities make it possible to use advanced technology to control plant safety risks; but at the same time, it also faces manufacturing safety. challenge. On the one hand, the training management that is common to industrial enterprises is not serious, the equipment management is chaotic, the field operations are not standardized, and the safety measures are not charged. The status of safety risk management and control, such as incomplete investigation of hidden dangers, incomplete contingency plans, inadequate safety inspections, and failure to implement safety responsibilities The thorough perception, extensive interoperability and in-depth intelligence of the networked system extend the reach of health, safety and environmental management to “personnel Unsafe behavior or state, unsafe condition of the object, unsafe operation of the process, unsafe operation of the machine or equipment, environmental uneasiness "Full-state" real-time management and control layer to achieve comprehensive awareness, intelligent analysis and instant control management of health, safety and environment in high-risk environments; Through the organic integration of computer software and hardware technology and data mining and intelligent analysis technology, an institutionalized, refined and streamlined management mechanism is constructed. Control security management risk vulnerabilities and achieve loop optimization of PDCA (Plan-Do-Check-Response). On the other hand, after the information silos are broken, the status quo of the equipment and system security protection at the production site is insufficient. Technical and management means to standardize intelligent factory information security measures (such as firewalls, gatekeepers, etc.) and establish an information security defense system To achieve the control of information security risks and to build a secure environment for information resources. This standard. a) is a common basic standard and applies to the security control of smart factories; b) propose a smart factory security control model as a technical framework to cover the activities necessary for smart factory security control; c) propose requirements for the development, implementation, maintenance and operation of security policies or security services that need to meet smart factory requirements, including Unauthorized personnel damage the safety functions of the smart factory and preventive measures that adversely affect it. Smart factory safety control requirements

1 Scope

This standard specifies the general requirements for intelligent factory safety control, personnel safety control, material safety control, process safety control, equipment safety Basic requirements for full control, environmental safety control and information security control. This standard applies to engineering design parties, equipment manufacturers, system integrators, users and evaluation agencies for intelligent factory safety control. Planning, design, implementation, acceptance and operation and maintenance phases.

2 Normative references

The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. GB/T 20438.4-2017 Functional safety of electrical/electronic/programmable electronic safety related systems - Part 4. Definitions and reductions Abbreviation GB/T 21109.1 Functional safety of safety instrumented systems in the process industry - Part 1. Framework, definitions, systems, hardware and soft Requirements GB 50493 Petrochemical flammable gas and toxic gas detection alarm design specification 3 Terms, definitions and abbreviations 3.1 Terms and definitions The following terms and definitions as defined in GB/T 20438.4-2017 and GB/T 21109.1 apply to this document. 3.1.1 Smart factory smartfactory On the basis of digital factories, using IoT technology and monitoring technology to strengthen information management and services, improve the controllability of the production process, Reduce manual intervention on the production line and plan the schedule. At the same time, it integrates emerging technologies such as intelligent means and intelligent systems to build an efficient, Energy-saving, green, environmentally friendly and comfortable humanized chemical plant. 3.1.2 Functional safety functionalsafety The part of overall safety related to EUC and EUC control systems depends on E/E/PE safety related systems and other risk reductions The measure performs its function correctly. [GB/T 20438.4-2017, definition 3.1.12] 3.1.3 Safety related system safety-related system A system that meets both of the following requirements. --- Perform the required security functions to achieve or maintain the security status of the EUC; --- or with other E/E/PE safety-related systems and other risk reduction measures, can achieve the required safety functions The required safety integrity. Note. Rewrite GB/T 20438.4-2017, definition 3.4.1.
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