Intelligent Database Systems Lab 國立雲林科技大學 National Yunlin University of Science and Technology 1 The k-means range algorithm for personalized data clustering.

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Intelligent Database Systems Lab 國立雲林科技大學 National Yunlin University of Science and Technology 1 The k-means range algorithm for personalized data clustering in e-commerce Advisor : Dr. Hsu Presenter : Ai-Chen Liao Authors : Georgios P. Papamichail, Dimitrios P. Papamichal EJOR. Page(s) :

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 2 Outline Motivation Objective Method  The k-means algorithm  Multi-dimensional range search  The k-means range algorithm Experimental Evaluation Implications Conclusion Personal Opinions

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 3 Motivation  Shoppers desire to define their preferences and customize the purchase information within the electronic shopping environment according to their individual needs.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 4 Objective  It offers a real-time solution for the development of distributed interactive decision aids in e-commerce.  This paper also discusses the implications and advantages of this approach in the development of on- line shopping environments and consumer decision aids in traditional and mobile e-commerce applications.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 5 Method ─ The k-means algorithm k-means algorithm tries to minimize the squared error : It combined dissimilarity measure :

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 6 Method ─ Multi-dimensional range search A formal description of the multi-dimensional rang search is: Input: A set S of n data points in the d-dimensional space, so that A d-dimensional rectangle R, defined by a set of two-dimensional points, each one representing a rectangle dimension. Output: All data points m lying inside the rectangle R.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 7 Method ─ Multi-dimensional range search

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 8 Method ─ The k-means range algorithm

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 9 Experimental evaluation DS1: movies ( Imdb movie database ) [ media type, rating, year, category, price, length ] DS2: books ( Amazon book catalog ) [ list price, final price, year, sales rank, customer rating, edition ]

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 10 Implications The clustering algorithm used, works efficiently both on numeric and categorical data, and also in clustering large data sets. The consumer can combine data items from various sources, filter them using the range search and classify them, thus being able to integrate product catalogs from different suppliers.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 11 Implications The online store need not keep information regarding the shopper apart from his preference rectangle and final purchase decisions, enhancing in this way ethical factors such as anonymity in purchasing, capturing only changes in user preference per session. In the case of mobile computing, the algorithm described in this paper can be serviced by the online shop server cluster, and the user can retrieve the filtered information in his mobile device through incremental steps, or apply decision-making software to shape his personalized purchasing criteria and preferences.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 12 Conclusion  This paper combines the multi-dimensional range tree and the k-means algorithm to produce an orthogonal range data clustering method, which facilitates the efficient personalized decision-making in e-commerce applications.

Intelligent Database Systems Lab N.Y.U.S.T. I. M. 13 Personal Opinions Advantage  … Drawback  … Application  clustering