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A decision tree based decomposition method for oil refinery scheduling 被引量:2

A decision tree based decomposition method for oil refinery scheduling
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摘要 Refinery scheduling attracts increasing concerns in both academic and industrial communities in recent years.However, due to the complexity of refinery processes, little has been reported for success use in real world refineries. In academic studies, refinery scheduling is usually treated as an integrated, large-scale optimization problem,though such complex optimization problems are extremely difficult to solve. In this paper, we proposed a way to exploit the prior knowledge existing in refineries, and developed a decision making system to guide the scheduling process. For a real world fuel oil oriented refinery, ten adjusting process scales are predetermined. A C4.5 decision tree works based on the finished oil demand plan to classify the corresponding category(i.e. adjusting scale). Then,a specific sub-scheduling problem with respect to the determined adjusting scale is solved. The proposed strategy is demonstrated with a scheduling case originated from a real world refinery. Refinery scheduling attracts increasing concerns in both academic and industrial communities in recent years.However, due to the complexity of refinery processes, little has been reported for success use in real world refineries. In academic studies, refinery scheduling is usually treated as an integrated, large-scale optimization problem,though such complex optimization problems are extremely difficult to solve. In this paper, we proposed a way to exploit the prior knowledge existing in refineries, and developed a decision making system to guide the scheduling process. For a real world fuel oil oriented refinery, ten adjusting process scales are predetermined. A C4.5 decision tree works based on the finished oil demand plan to classify the corresponding category(i.e. adjusting scale). Then,a specific sub-scheduling problem with respect to the determined adjusting scale is solved. The proposed strategy is demonstrated with a scheduling case originated from a real world refinery.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第8期1605-1612,共8页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(21706282,21276137,61273039,61673236) Science Foundation of China University of Petroleum,Beijing(No.2462017YJRC028) the National High-tech 863 Program of China(2013AA 040702)
关键词 分解方法 炼油厂 学术研究 优化问题 精炼厂 决策系统 需求计划 复杂性 Refinery scheduling Decision tree C4.5 Decomposition method
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