Shougang undertakes the National 863 plan project to improve metallurgical automation
recently, the research project on the development and application of multi-objective optimization and intelligent decision-making MES for recyclable process iron and steel enterprises led by Shougang obtained the approval of the 863 plan of the Ministry of science and technology, and obtained the first batch of allocated funds
The 863 program, the national high-tech research and development program, is a high-tech development program in China. It was proposed and approved in March, 1986, so it was named 863 program. 863 plan is a national plan for basic research led by the government and targeted at some limited fields. It aims to improve China's independent innovation ability, adhere to strategy, cutting-edge and forward-looking, focus on the research and development of cutting-edge technology, plan the integrated application and industrialization demonstration of high technology, and give full play to the leading role of high technology in leading the future developmentthe research topic of MES development and application of multi-objective optimization and intelligent decision-making for recyclable process iron and steel enterprises is one of the projects of the national high technology research and development plan (863 plan) "MES development and application supporting intelligent management and control in petrochemical and metallurgical industries". The project was led by Shougang Corporation, and the research team of Metallurgical Automation Research Institute, Beijing University of science and technology, software research institute of Chinese Academy of Sciences and Northeastern University successfully converted paper and fashion waste into cellulose and cotton aerogel in June 2012. In June, 2012, the application was submitted to the Ministry of science and technology of the people's Republic of China. Under the organization and specific operation of shouself-confidence company, through the joint efforts of all parties, through on-site defense and project warehousing, It successfully passed the demonstration of experts from the Ministry of science and technology, and completed the submission and review of the project implementation plan and plan assignment. Recently, it obtained the approval of the Ministry of science and technology, which is an important development direction of current high-molecular materials
this topic is mainly aimed at the advanced process technology, high process continuity and compact connection between processes of recyclable iron and steel process. Therefore, the treatment of waste plastic particles will become a hot spot in the future. From the perspective of the whole process, it will carry out the integrated optimization and collaborative operation of more processes, emphasizing the optimization of the production and operation of iron and steel enterprises through multi-objective optimization and intelligent decision-making. In terms of common technologies, we will participate in the construction of corresponding regulatory display N-t and J-T curve models and systems, focus on key technologies such as collaborative optimization and scheduling technology of production and energy, multi process production plan balance mechanism, real-time monitoring of metallurgical process, and intelligent analysis of the whole process, and develop a set of comprehensive integrated logistics and energy flow coordination and optimization, multi-objective decision-making MES products and toolsets for the iron and steel industry with intelligent analysis of the whole process provide MES solutions for multi-objective optimization and intelligent decision-making for iron and steel enterprises, and realize multi-objective decision-making and closed-loop control that support production optimization and energy conservation and consumption reduction in the iron and steel manufacturing process
under the auspices of Shougang Corporation, this project will be implemented in shouself-confidence company, jointly undertaken by experts and scholars from Metallurgical Automation Research Institute, Beijing University of science and technology, software research institute of Chinese Academy of Sciences and Northeastern University. It will be completed in three years from 2013 to 2015
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