锅炉设计外文翻译---燃煤锅炉的个案事故研究
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1、- 1 - 附录 A 英文原文 A. Kusiak and A. Burns, Mining Temporal Data: A Coal-Fired Boiler Case Study, Proceedings of the 9thInternational Conference, KES 2005, Melbourne, Australia, September 14-16, 2005, in R. Khosla, R.J. Howlett, L.C. Jain (Eds), Knowledge-Based Intelligent Information and Engineering Sy
2、stems: Vol. III, LNAI 3683, Springer, Heidelberg, Germany, 2005, pp. 953-958. Mining Temporal Data: A Coal-Fired Boiler CaseStudy Andrew Kusiak and Alex Burns Intelligent Systems Laboratory, Industrial Engineering 3131 SeamansCenter, The University of Iowa Iowa City, IA52242 1527, USA andrew-kusiaku
3、iowa.edu Abstract This paper presents an approach to control pluggage of a coal-fired boiler. The proposed approach involves statistics, data partitioning, parameter reduction, and data mining. The proposed approach was tested on a 750 MW commercial coal-fired boiler affected with a fouling problem
4、that leads to boiler pluggage that causes unscheduled shutdowns. The rare-event detection approach presented in the paper identified several critical time-based data segments that are indicative of the ash pluggage. 1 Introduction The ability to predict and avoid rare events in time series data is a
5、 - 2 - challenge that could be addressed by data mining approaches. Difficulties arise from the fact that often a significant volume of data describes normal conditions and only a small amount of data may be available for rare events. This problem is further exacerbated by the fact that traditional
6、data mining does not account for the time dependency of the temporal data. The approach presented in this paper overcomes these concerns by defining time windows. The approach presented in this paper is based on the two main concepts. The first is that the decision-tree data-mining algorithm capture
7、s the subtle parameter relationships that cause the rare event to occur 1. The second concept is that partitioning the data using time windows provides the ability to capture and describe sequences of events that may cause the rare failure. 2 Event Detection Procedure In the case study discussed in
8、the next section rare events can be detected by applying the five step procedure. These five steps include: Step 1: Parameter Categorization The parameter list is divided into two categories, response parameters and impact parameters. Response parameters are those that change values due to a rare ev
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- 锅炉 设计 外文 翻译 燃煤 个案 事故 研究 钻研
