[1]
GAO Wei, JIN Guo-fu, CHENG Er-jing. Constitution of aid-oriented process repository and knowledge-capture method[J]. Computer Integrated Manufacturing Systems. 2004, 10(7): 843-747.
Google Scholar
[2]
LI Renpu, WANG Zheng-ou. Mining classification rules using rough sets and neural networks[J]. European Journal of Operational Research. 2004, 157(1): 439-448.
DOI: 10.1016/s0377-2217(03)00422-3
Google Scholar
[3]
MEHMED Kantardzic, BENJAMIN Djulbegovic, HAZEM Hamdan. A data-mining approach to improving Polycythemia Vera diagnosis[J]. Computers & Industrial Engineering. 2002, 43(1): 765-773.
DOI: 10.1016/s0360-8352(02)00138-9
Google Scholar
[4]
KOONCE D A, TSAI S C. Using data mining to find patterns in genetic algorithm solutions to a job shop schedule[J]. Computers & Industrial Engineering. 2000, 38(1): 361-374.
DOI: 10.1016/s0360-8352(00)00050-4
Google Scholar
[5]
ALI K, WANG R, RICARDO G. A genetic algorithm methodology for data mining and intelligent knowledge acquisition[J]. Computers & Industrial Engineering. 2001, 40(1): 361-377.
DOI: 10.1016/s0360-8352(01)00036-5
Google Scholar
[6]
WANG Ying-chun, YIN Ji-long, LI Da-yong, et al. Knowledge Discovery Based on Decision Trees C4. 5 for Stamping Process[J]. Mechanical Science and Technology. 2004, 23(12): 1506-1514.
Google Scholar
[7]
Li-Pheng Khoo, Lian-Yin Zhai. A prototype genetic algorithm-enhanced rough set-based rule introduction system[J]. Computers in Industry. 2001, 46(1): 95-106.
DOI: 10.1016/s0166-3615(01)00117-8
Google Scholar
[8]
XUE Jun-fang, XIANG Dong, QIU Chang-hua. Knowledge acquirement method for component integrated based on rough set[J]. Computer Integrated Manufacturing Systems. 2007, 13(8): 1658-1664.
Google Scholar
[9]
SARKAR Manish. Rough-fuzzy functions in classification[J]. Fuzzy Sets and Systems. 2002, 132(1): 353-369.
DOI: 10.1016/s0165-0114(02)00119-7
Google Scholar
[10]
ZHANG Hui, ZHANG Hao, XU Zheng, et al. Research of partner enterprise selection in supply chain management based on support vector machine[J]. Computer Integrated Manufacturing Systems. 2004, 10(7): 796-800.
Google Scholar
[11]
CHANG Yang-Chi, LAI Po-Chuan, LEE Meng-Tsung. An integrated approach for operational knowledge acquisition of refuse incinerators[J]. Expert Systems with Applications. 2007, 33(1): 413-419.
DOI: 10.1016/j.eswa.2006.05.008
Google Scholar
[12]
HU Yi-Chung. A knowledge acquisition method for determining utilities of linguistic values for product factors[J]. European Journal of Operational Research. 2006, 174(1): 945-958.
DOI: 10.1016/j.ejor.2005.01.054
Google Scholar
[13]
LEUNG Yee, WU Wei-Zhi, ZHANG Wen-Xiu. Knowledge acquisition incomplete information systems: A rough set approach[J]. European Journal of Operational Research. 2006, 168(1): 164-180.
DOI: 10.1016/j.ejor.2004.03.032
Google Scholar
[14]
Qiang Shen, Alexios Chouchoulas. A modular approach to generating fuzzy rules with reduced attributes for the monitoring of complex systems[J]. Engineering Applications of Artificial Intelligence. 2000, 13(1): 263-278.
DOI: 10.1016/s0952-1976(00)00010-5
Google Scholar
[15]
GRUBER Thomas R. A translation approach to portable ontology specifications[J]. Knowledge Acquisition. 1993, 5(2): 199-220.
DOI: 10.1006/knac.1993.1008
Google Scholar