Case-Based Reasoning(CBR) Model for Ultra-Fast Cooling in Plate Mill
New generation thermo-mechanical control process(TMCP) based on ultra-fast cooling is being widely adopted in plate mill to product high-performance steel material at low cost. Ultra-fast cooling system is complex because of optimizing the temperature control error generated by heat transfer mathema...
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Veröffentlicht in: | 中国机械工程学报:英文版 2014, Vol.27 (6), p.1264-1271 |
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description | New generation thermo-mechanical control process(TMCP) based on ultra-fast cooling is being widely adopted in plate mill to product high-performance steel material at low cost. Ultra-fast cooling system is complex because of optimizing the temperature control error generated by heat transfer mathematical model and process parameters. In order to simplify the system and improve the temperature control precision in ultra-fast cooling process, several existing models of case-based reasoning(CBR) model are reviewed. Combining with ultra-fast cooling process, a developed R5 CBR model is proposed, which mainly improves the case representation, similarity relation and retrieval module. Certainty factor is defined in semantics memory unit of plate case which provides not only internal data reliability but also product performance reliability. Similarity relation is improved by defined power index similarity membership function. Retrieval process is simplified and retrieval efficiency is improved apparently by windmill retrieval algorithm. The proposed CBR model is used for predicting the case of cooling strategy and its capability is superior to traditional process model. In order to perform comprehensive investigations on ultra-fast cooling process, different steel plates are considered for the experiment. The validation experiment and industrial production of proposed CBR model are carried out, which demonstrated that finish cooling temperature(FCT) error is controlled within±25℃ and quality rate of product is more than 97%. The proposed CBR model can simplify ultra-fast cooling system and give quality performance for steel product. |
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Ultra-fast cooling system is complex because of optimizing the temperature control error generated by heat transfer mathematical model and process parameters. In order to simplify the system and improve the temperature control precision in ultra-fast cooling process, several existing models of case-based reasoning(CBR) model are reviewed. Combining with ultra-fast cooling process, a developed R5 CBR model is proposed, which mainly improves the case representation, similarity relation and retrieval module. Certainty factor is defined in semantics memory unit of plate case which provides not only internal data reliability but also product performance reliability. Similarity relation is improved by defined power index similarity membership function. Retrieval process is simplified and retrieval efficiency is improved apparently by windmill retrieval algorithm. The proposed CBR model is used for predicting the case of cooling strategy and its capability is superior to traditional process model. In order to perform comprehensive investigations on ultra-fast cooling process, different steel plates are considered for the experiment. The validation experiment and industrial production of proposed CBR model are carried out, which demonstrated that finish cooling temperature(FCT) error is controlled within±25℃ and quality rate of product is more than 97%. The proposed CBR model can simplify ultra-fast cooling system and give quality performance for steel product.</description><identifier>ISSN: 1000-9345</identifier><identifier>EISSN: 2192-8258</identifier><language>eng</language><subject>CBR ; 中板轧机 ; 传热数学模型 ; 快速冷却系统 ; 性能可靠性 ; 案例推理 ; 热机械控制工艺 ; 超快速冷却</subject><ispartof>中国机械工程学报:英文版, 2014, Vol.27 (6), p.1264-1271</ispartof><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Uhttp://image.cqvip.com/vip1000/qk/85891X/85891X.jpg</thumbnail><link.rule.ids>314,776,780,4010</link.rule.ids></links><search><creatorcontrib>HU Xiao WANG Zhaodong WANG Guodong</creatorcontrib><title>Case-Based Reasoning(CBR) Model for Ultra-Fast Cooling in Plate Mill</title><title>中国机械工程学报:英文版</title><addtitle>Chinese Journal of Mechanical Engineering</addtitle><description>New generation thermo-mechanical control process(TMCP) based on ultra-fast cooling is being widely adopted in plate mill to product high-performance steel material at low cost. Ultra-fast cooling system is complex because of optimizing the temperature control error generated by heat transfer mathematical model and process parameters. In order to simplify the system and improve the temperature control precision in ultra-fast cooling process, several existing models of case-based reasoning(CBR) model are reviewed. Combining with ultra-fast cooling process, a developed R5 CBR model is proposed, which mainly improves the case representation, similarity relation and retrieval module. Certainty factor is defined in semantics memory unit of plate case which provides not only internal data reliability but also product performance reliability. Similarity relation is improved by defined power index similarity membership function. Retrieval process is simplified and retrieval efficiency is improved apparently by windmill retrieval algorithm. The proposed CBR model is used for predicting the case of cooling strategy and its capability is superior to traditional process model. In order to perform comprehensive investigations on ultra-fast cooling process, different steel plates are considered for the experiment. The validation experiment and industrial production of proposed CBR model are carried out, which demonstrated that finish cooling temperature(FCT) error is controlled within±25℃ and quality rate of product is more than 97%. The proposed CBR model can simplify ultra-fast cooling system and give quality performance for steel product.</description><subject>CBR</subject><subject>中板轧机</subject><subject>传热数学模型</subject><subject>快速冷却系统</subject><subject>性能可靠性</subject><subject>案例推理</subject><subject>热机械控制工艺</subject><subject>超快速冷却</subject><issn>1000-9345</issn><issn>2192-8258</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2014</creationdate><recordtype>article</recordtype><recordid>eNpjYuA0MrQ00rUwMrVgYeA0NDAw0LU0NjHlYOAqLs4C8swMDS04GTycE4tTdZ2ARIpCUGpicX5eZl76-z0dzk5B7_d0Kvjmp6TmKKTlFymE5pQUJeq6JRaXKDjn5-cAVSlk5ikE5CSWpCr4Zubk8DCwpiXmFKfyQmluBiU31xBnD93kjPy89EKg-viCoszcxKLKeDMzYwMLc0szE2OiFAEAIu89Nw</recordid><startdate>2014</startdate><enddate>2014</enddate><creator>HU Xiao WANG Zhaodong WANG Guodong</creator><scope>2RA</scope><scope>92L</scope><scope>CQIGP</scope><scope>W92</scope><scope>~WA</scope></search><sort><creationdate>2014</creationdate><title>Case-Based Reasoning(CBR) Model for Ultra-Fast Cooling in Plate Mill</title><author>HU Xiao WANG Zhaodong WANG Guodong</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-chongqing_primary_6630879643</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2014</creationdate><topic>CBR</topic><topic>中板轧机</topic><topic>传热数学模型</topic><topic>快速冷却系统</topic><topic>性能可靠性</topic><topic>案例推理</topic><topic>热机械控制工艺</topic><topic>超快速冷却</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>HU Xiao WANG Zhaodong WANG Guodong</creatorcontrib><collection>中文科技期刊数据库</collection><collection>中文科技期刊数据库-CALIS站点</collection><collection>中文科技期刊数据库-7.0平台</collection><collection>中文科技期刊数据库-工程技术</collection><collection>中文科技期刊数据库- 镜像站点</collection><jtitle>中国机械工程学报:英文版</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>HU Xiao WANG Zhaodong WANG Guodong</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Case-Based Reasoning(CBR) Model for Ultra-Fast Cooling in Plate Mill</atitle><jtitle>中国机械工程学报:英文版</jtitle><addtitle>Chinese Journal of Mechanical Engineering</addtitle><date>2014</date><risdate>2014</risdate><volume>27</volume><issue>6</issue><spage>1264</spage><epage>1271</epage><pages>1264-1271</pages><issn>1000-9345</issn><eissn>2192-8258</eissn><abstract>New generation thermo-mechanical control process(TMCP) based on ultra-fast cooling is being widely adopted in plate mill to product high-performance steel material at low cost. Ultra-fast cooling system is complex because of optimizing the temperature control error generated by heat transfer mathematical model and process parameters. In order to simplify the system and improve the temperature control precision in ultra-fast cooling process, several existing models of case-based reasoning(CBR) model are reviewed. Combining with ultra-fast cooling process, a developed R5 CBR model is proposed, which mainly improves the case representation, similarity relation and retrieval module. Certainty factor is defined in semantics memory unit of plate case which provides not only internal data reliability but also product performance reliability. Similarity relation is improved by defined power index similarity membership function. Retrieval process is simplified and retrieval efficiency is improved apparently by windmill retrieval algorithm. The proposed CBR model is used for predicting the case of cooling strategy and its capability is superior to traditional process model. In order to perform comprehensive investigations on ultra-fast cooling process, different steel plates are considered for the experiment. The validation experiment and industrial production of proposed CBR model are carried out, which demonstrated that finish cooling temperature(FCT) error is controlled within±25℃ and quality rate of product is more than 97%. The proposed CBR model can simplify ultra-fast cooling system and give quality performance for steel product.</abstract></addata></record> |
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subjects | CBR 中板轧机 传热数学模型 快速冷却系统 性能可靠性 案例推理 热机械控制工艺 超快速冷却 |
title | Case-Based Reasoning(CBR) Model for Ultra-Fast Cooling in Plate Mill |
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