GB/T 32854.1-2016 English PDFUS$359.00 ยท In stock  
  Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 32854.1-2016: Industrial automation systems and integration -- Integration of advanced process control and optimization software for manufacturing systems -- Part 1: overview, concepts and terminologies Status: Valid 
 Basic dataStandard ID: GB/T 32854.1-2016 (GB/T32854.1-2016)Description (Translated English): Industrial automation systems and integration -- Integration of advanced process control and optimization software for manufacturing systems -- Part 1: overview, concepts and terminologies Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: J07 Classification of International Standard: 25.040.40 Word Count Estimation: 18,114 Date of Issue: 2016-08-29 Date of Implementation: 2017-03-01 Regulation (derived from): National Standard Announcement 2016 No.14 Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China GB/T 32854.1-2016: Industrial automation systems and integration -- Integration of advanced process control and optimization software for manufacturing systems -- Part 1: overview, concepts and terminologies---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. Industrial automation systems and integration - Integration of advanced process control and optimization software for manufacturing systems - Part 1. overview, concepts and terminologies ICS 25.040.40 J07 National Standards of People's Republic of China Industrial automation systems and integration Advanced control and optimization software for manufacturing system Part 1. Introduction, concepts and terminology Part 1. overview, conceptsandterminologies 2016-08-29 released 2017-03-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released Directory Preface III Introduction IV 1 Scope 1 2 normative reference document 1 3 Terms and definitions 1 3.1 General terms 1 3.2 Control and optimization 1 3.3 Assessment 2 3.4 modeling analysis 3 3.5 system implementation 3 4 acronym 3 5 level positioning 4 Advanced Control and Optimization Architecture 5 6.1 functional architecture 5 6.2 basic concept of the module 5 Appendix A (Informative Appendix) Advanced Control and Optimization System Application Architecture Example 7 Appendix B (informative) Typical soft-sensing technology 8 Appendix C (informative) Typical advanced control technology 9 Appendix D (informative) Typical optimization techniques 10 Appendix E (informative) Typical performance assessment techniques 11 Reference 12 ForewordGB/T 32854 "industrial automation systems and integrated manufacturing system advanced control and optimization software integration" is divided into four parts. - Part 1. Overview, Concepts and Terminology - Part 2. Framework and functionality - Part 3. Activity model and workflow (Activitymodelsandworkflows) - Part 4. Information Interaction and Use (Informationexchangeandusage) This part is drafted in accordance with the rules given in GB/T 1.1-2009. Please note that some of the contents of this document may involve patents. The issuer of this document does not assume responsibility for the identification of these patents. This part is made by the China Machinery Industry Federation. This part is headed by the National Automation System and Integrated Standardization Technical Committee (SAC/TC159). This part of the drafting unit. Zhejiang University, Zhejiang Central Control Software Technology Co., Ltd., Beijing Machinery Industry Automation Research Institute. The main drafters of this part. Su Hongye, Li Xiaodong, Zhang Yanhui, Lu Shan, Xie Lei, Wang Haidan, Wang Yue, Jin Xiaoming, Gu Yong, Zhang Quanling, Li Hongliang, Ye Jiandi, Zhang Jun, Liu Bingjie, Zhang Shuji.IntroductionIndustrial automation involves a wide range of process control is one of the most important branches. It is mainly for all process parameters, ie, temperature Pressure, flow, level (or level), composition and physical properties of the control problem, covering almost all the industrial areas, such as petroleum, chemical, Electricity, metallurgy, textile, building materials, light industry, nuclear energy, pharmaceutical and so on. With the development of modern industry and the complexity of the controlled object, such as multi-parameter time-varying, large hysteresis and has a serious nonlinear and strong coupling Multi-input/multi-output control and other difficult features and a large number of obvious, the conventional single-loop control strategy has been unable to meet the needs of modern industrial automation begging. Since the 1970s, with the development of control theory and technology, a series of model-based multi-loop control strategy has been proposed. Intelligent control strategy and advanced control method based on stochastic statistical analysis, multi-variable model predictive control, fuzzy Control, expert control, random statistical process control. Compared with conventional control, advanced control and optimization system set feedforward, feedback and optimization principle in one, can be in the harsh device multiple constraints , So that the production in the optimal constraints on the reliable operation of the border. Through the implementation of advanced control and optimization, can improve the process of dynamic control performance, Reduce the fluctuation range of the process variable so that it can be closer to its optimized target value, thereby achieving the card edge control of the production device in order to enhance the device The stability and safety of the operation, the uniformity of the product quality, the improvement of the target product yield and the increase in the handling capacity of the device, Cost and reduce environmental pollution. Advanced control and optimization is a key part of the manufacturing system, is the actual implementation of production planning and scheduling instructions, convergence manufacturing operation management And underlying infrastructure control. In the field of process manufacturing, different vendors or developers offer similar functions of software, but due to the different historical background, the development of the ring Differences in the situation, as well as the focus of attention to the demand, resulting in the various suppliers or developers of software between the relatively closed, isolated, making the user May repeat the purchase of similar functions of the software, resulting in waste of resources. In accordance with this standard can be maximized to achieve the development of different software vendors Between the integration and collaboration. Advanced control and optimization software requires suppliers, developers or consulting service providers in accordance with the actual project design, implementation, commissioning and training, Need a unified standard specification for guidance. This section gives the general architecture, key functions, and how they are integrated with advanced control and optimization software. Under the guidance of this section Design, development and implementation of the software, with versatility, openness and scalability. Industrial automation systems and integration Advanced control and optimization software for manufacturing system Part 1. Introduction, concepts and terminology1 ScopeThis part of GB/T 32854 specifies terms, definitions and functional architectures for the integration of advanced control and optimization software for manufacturing systems. And the basic concepts of soft measurement, advanced control, optimization and performance evaluation modules. This section applies to the development of advanced control and optimization software (software developers), advanced control and optimization software applications. Process solution providers, process production departments, enterprise information departments), independent software testing organizations, advanced control and optimization software implementation and Consulting services and software industry associations, regional information industry authorities and so on.2 normative reference documentsThe following documents are indispensable for the application of this document. For dated references, only the dated edition applies to this article Pieces. For undated references, the latest edition (including all modifications) applies to this document. Integration of enterprise control systems - Part 1. Models and terminology GB/T3 terms and definitionsThe following terms and definitions apply to this document. 3.1 General terms 3.1.1 Benchmark benchmark A test standard that measures the performance of a control algorithm or control strategy. 3.1.2 Process simulation Through the scientific calculation and mechanism model to imitate the manufacturing process of a method. 3.2 Control and optimization 3.2.1 Adaptive control adaptive control For the controlled object characteristics or changes in the external environment, the use of automatic methods to change or affect the control structure and parameters of the control strategy. 3.2.2 Advanced control and optimization Advanced control strategy and optimization strategy. 3.2.3 Cascade control system cascadecontrolsystem A classic complex control system consisting of two or more controllers connected in series to form two or more closed-loop controls ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 32854.1-2016_English be delivered?Answer: Upon your order, we will start to translate GB/T 32854.1-2016_English as soon as possible, and keep you informed of the progress. 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