Journal of Frontiers of Computer Science and Technology ›› 2022, Vol. 16 ›› Issue (5): 1053-1063.DOI: 10.3778/j.issn.1673-9418.2011003
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LI Jinhong, WANG Lizhen(), ZHOU Lihua
Received:
2020-11-02
Revised:
2021-01-05
Online:
2022-05-01
Published:
2022-05-19
About author:
LI Jinhong, born in 1994, M.S. candidate. Her research interest is spatial data mining.Supported by:
通讯作者:
+ E-mail: lzhwang@ynu.edu.cn作者简介:
李金红(1994—),女,云南曲靖人,硕士研究生,主要研究方向为空间数据挖掘。基金资助:
CLC Number:
LI Jinhong, WANG Lizhen, ZHOU Lihua. Top-k Average Utility Co-location Pattern Mining of Fuzzy Features[J]. Journal of Frontiers of Computer Science and Technology, 2022, 16(5): 1053-1063.
李金红, 王丽珍, 周丽华. 模糊特征的top-k平均效用co-location模式挖掘[J]. 计算机科学与探索, 2022, 16(5): 1053-1063.
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URL: http://fcst.ceaj.org/EN/10.3778/j.issn.1673-9418.2011003
序号 | 实例 | 邻居实例 |
---|---|---|
T1 | [A1,0.2] | [B2,0.5],[E3,0.7] |
T2 | [A2,0.4] | [B2,0.5],[C2,0.4],[E3,0.7] |
T3 | [A3,0.5] | [B3,0.7],[C3,0.8],[C4,0.9], [D1,0.3],[E2,0.5] |
T4 | [A4,0.8] | [B4,0.9],[E1,0.2] |
T5 | [A5,0.7] | [C5,0.5],[D3,0.6] |
T6 | [B1,0.3] | [D2,0.8] |
T7 | [B2,0.5] | [C2,0.4],[D2,0.8],[E3,0.7] |
T8 | [B3,0.7] | [C3,0.8],[C4,0.9] |
T9 | [B4,0.9] | [E1,0.2] |
T10 | [C3,0.8] | [D1,0.3],[E2,0.5] |
T11 | [D1,0.3] | [E2,0.5] |
T12 | [D2,0.8] | [E3,0.7] |
Table 1 Star neighborhoods of spatial dataset in Fig.1
序号 | 实例 | 邻居实例 |
---|---|---|
T1 | [A1,0.2] | [B2,0.5],[E3,0.7] |
T2 | [A2,0.4] | [B2,0.5],[C2,0.4],[E3,0.7] |
T3 | [A3,0.5] | [B3,0.7],[C3,0.8],[C4,0.9], [D1,0.3],[E2,0.5] |
T4 | [A4,0.8] | [B4,0.9],[E1,0.2] |
T5 | [A5,0.7] | [C5,0.5],[D3,0.6] |
T6 | [B1,0.3] | [D2,0.8] |
T7 | [B2,0.5] | [C2,0.4],[D2,0.8],[E3,0.7] |
T8 | [B3,0.7] | [C3,0.8],[C4,0.9] |
T9 | [B4,0.9] | [E1,0.2] |
T10 | [C3,0.8] | [D1,0.3],[E2,0.5] |
T11 | [D1,0.3] | [E2,0.5] |
T12 | [D2,0.8] | [E3,0.7] |
模糊特征 | 外部效用 |
---|---|
| 5 |
| 4 |
| 3 |
| 1 |
| 2 |
Table 2 External utility of 5 fuzzy features in Fig.1
模糊特征 | 外部效用 |
---|---|
| 5 |
| 4 |
| 3 |
| 1 |
| 2 |
序号 | 实例 | 邻居实例 | ftwu |
---|---|---|---|
T1 | [A1,0.2] | [B2,0.5],[E3,0.7] | 2.0 |
T2 | [A2,0.4] | [B2,0.5],[C2,0.4],[E3,0.7] | 2.0 |
T3 | [A3,0.5] | [B3,0.7],[C3,0.8],[C4,0.9],[D1,0.3],[E2,0.5] | 5.1 |
T4 | [A4,0.8] | [B4,0.9],[E1,0.2] | 4.0 |
T5 | [A5,0.7] | [C5,0.5],[D3,0.6] | 3.5 |
T6 | [B1,0.3] | [D2,0.8] | 1.2 |
T7 | [B2,0.5] | [C2,0.4],[D2,0.8],[E3,0.7] | 2.0 |
T8 | [B3,0.7] | [C3,0.8],[C4,0.9] | 5.1 |
T9 | [B4,0.9] | [E1,0.2] | 3.6 |
T10 | [C3,0.8] | [D1,0.3],[E2,0.5] | 2.4 |
T11 | [D1,0.3] | [E2,0.5] | 1.0 |
T12 | [D2,0.8] | [E3,0.7] | 1.4 |
Table 3 Maximum fuzzy utility of star neighborhood of spatial dataset in Fig.1
序号 | 实例 | 邻居实例 | ftwu |
---|---|---|---|
T1 | [A1,0.2] | [B2,0.5],[E3,0.7] | 2.0 |
T2 | [A2,0.4] | [B2,0.5],[C2,0.4],[E3,0.7] | 2.0 |
T3 | [A3,0.5] | [B3,0.7],[C3,0.8],[C4,0.9],[D1,0.3],[E2,0.5] | 5.1 |
T4 | [A4,0.8] | [B4,0.9],[E1,0.2] | 4.0 |
T5 | [A5,0.7] | [C5,0.5],[D3,0.6] | 3.5 |
T6 | [B1,0.3] | [D2,0.8] | 1.2 |
T7 | [B2,0.5] | [C2,0.4],[D2,0.8],[E3,0.7] | 2.0 |
T8 | [B3,0.7] | [C3,0.8],[C4,0.9] | 5.1 |
T9 | [B4,0.9] | [E1,0.2] | 3.6 |
T10 | [C3,0.8] | [D1,0.3],[E2,0.5] | 2.4 |
T11 | [D1,0.3] | [E2,0.5] | 1.0 |
T12 | [D2,0.8] | [E3,0.7] | 1.4 |
[1] | SHEKHAR S, HUANG Y. Discovering spatial co-location patterns: a summary of results[C]// LNCS 2121: Proceedings of the 7th International Symposium on Advances in Spatial and Temporal Databases, Redondo Beach, Jul 12-15, 2001.Berlin, Heidelberg: Springer, 2001: 236-256. |
[2] |
HUANG Y, SHEKHAR S, XIONG H. Discovering coloca-tion patterns from spatial data sets: a general approach[J]. IEEE Transactions on Knowledge and Data Engineering, 2004, 16(12): 1472-1485.
DOI URL |
[3] | YOO J S, SHEKHAR S, SMITH J, et al. A partial join approach for mining co-location patterns[C]// Proceedings of the 12th Annual ACM International Workshop on Geogra-phic Information Systems, Washington, Nov 12-13, 2004. New York: ACM, 2004: 241-249. |
[4] | YOO J S, SHEKHAR S, CELIK M. A join-less approach for co-location pattern mining: a summary of results[C]// Procee-dings of the 2005 IEEE International Conference on Data Mining, Houston, Nov 27-30, 2005. Washington: IEEE Com-puter Society, 2005: 813-816. |
[5] |
BAO X G, WANG L Z. A clique-based approach for co-location pattern mining[J]. Information Sciences, 2019, 490: 244-264.
DOI URL |
[6] |
WANG L Z, BAO X G, ZHOU L H, et al. Mining maximal sub-prevalent co-location patterns[J]. World Wide Web, 2019, 22(5): 1971-1997.
DOI URL |
[7] | YANG S S, WANG L Z, BAO X G. A framework for mining spatial high utility co-location patterns[C]// Proceedings of the 12th International Conference on Fuzzy Systems and Know-ledge Discovery, Zhangjiajie, Aug 15-17, 2015. Piscataway: IEEE, 2015: 595-601. |
[8] | WANG L Z, JIANG W G, CHEN H M. Efficiently mining high utility co-location patterns from spatial data sets with instance specific utilities[C]// LNCS 10178: Proceedings of the 2017 International Conference on Database Systems for Advanced Applications, Suzhou, Mar 27-30, 2017. Cham: Springer, 2017: 458-474. |
[9] | 王晓璇, 王丽珍, 陈红梅, 等. 基于特征效用参与率的空间高效用co-location模式挖掘方法[J]. 计算机学报, 2019, 42(8): 1721-1738. |
WANG X X, WANG L Z, CHEN H M, et al. Mining spatial high utility co-location patterns based on feature utility ratio[J]. Chinese Journal of Computers, 2019, 42(8): 1721-1738. | |
[10] | YOO J S, BOW M. Mining top-k closed co-location patterns[C]// Proceedings of the 2011 IEEE International Conference on Spatial Data Mining and Geographical Knowledge Services, Fuzhou, Jun 29-Jul 1, 2011. Piscataway: IEEE, 2011: 100-105. |
[11] | WANG L Z, HAN J, CHEN H. Top-k probabilistic prevalent co-location mining in spatially uncertain data sets[J]. China Computer Science Frontier, 2016, 10(3): 488-503. |
[12] | 欧阳志平, 王丽珍, 陈红梅. 模糊对象的空间Co-location模式挖掘研究[J]. 计算机学报, 2011, 34(10): 1947-1955. |
OUYANG Z P, WANG L Z, CHEN H M. Mining spatial Co-location patterns for fuzzy objects[J]. Chinese Journal of Computers, 2011, 34(10): 1947-1955.
DOI URL |
|
[13] | YAO H, HAMILTON H J, BUTZ C J. A foundational app-roach to mining itemset utilities from databases[C]// Procee-dings of the 4th SIAM International Conference on Data Mining, Lake Buena Vista, Apr 22-24, 2004. Philadelphia: SIAM, 2004: 211-255. |
[14] | AHMED C F, TANBEER S K, JEONG B S. Efficient tree structures for high utility pattern mining in incremental data-bases[J]. IEEE Transactions on Knowledge and Data Engin-eering, 2009, 21(12): 1708-1721. |
[15] | TSENG V S, WU C, SHIE B E. UP-Growth: an efficient algorithm for high utility itemsets mining[C]// Proceedings of the 16th ACM SIGKDD International Conference on Knowledge Discovery and Data Mining, Washington, Jul 25-28, 2010. New York: ACM, 2010: 253-262. |
[16] | WU C, SHIE B E, TSENG V S. Mining top-k high utility itemsets[C]// Proceedings of the 18th ACM SIGKDD Con-ference on Knowledge Discovery and Data Mining, Beijing, Aug, 2012. New York: ACM, 2012: 78-86. |
[17] |
RYANG H, YUN U. Top-k high utility pattern mining with effective threshold raising strategies[J]. Knowledge-Based Systems, 2015, 76: 109-126.
DOI URL |
[18] | CHEN Y B, WANG L Z, WANG J L. Basic and optimiza-tion algorithms for mining high utility co-location patterns from fuzzy datasets[C]// Proceedings of the 4th International Conference on Fuzzy Systems and Data Mining, Bangkok, Nov 16-19, 2018. Amsterdam: IOS, 2018: 343-350. |
[19] | HONG T P, LEE C H, WANG S L. Mining high average utility itemsets[C]// Proceedings of the 2009 IEEE Interna-tional Conference on Systems, Man and Cybernetics, San Antonio, Oct 11-14, 2009. Piscataway: IEEE, 2009: 2526-2530. |
[20] | LIN C W, HONG T P, LU W H. Efficiently mining high average utility itemsets with a tree structure[C]// LNCS 5990: Proceedings of the 2nd International Conference on Intelligent Information and Database Systems, Hue City, Mar 24-26, 2010. Berlin, Heidelberg: Springer, 2010: 131-139. |
[21] | LAN G C, HONG T P, TSENG V S. Efficiently mining high average-utility itemsets with an improved upper-bound strategy[J]. International Journal of Information Technology and Decision Making, 2012, 11(5): 1009-1030. |
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