Abstract

An exorbitant source of data is easily available but the actual task lies in using this data efficiently. In this article, the aim is to analyse the significant information embedded in the customer purchase behaviour to recommend new products to them. Our proposed scheme is a two-fold approach. First, the authors retrieve various product correlations from the vast library of user transactions. Based on these product correlations, utility based association rules are learned which depict the customer purchase behaviour. These rules are then applied in a recommender system for novel product suggestions to the customers. With improved utility based mining the paper tries to incorporate the usefulness of an item set like cost, profit or any other factor along with their frequency. In this paper the authors have deployed the rules discovered from both the conventional Frequent Item Set Mining and Improved Utility Based Mining on an e-commerce platform to compare the accuracy of the algorithms. The obtained results establish the efficacy of the proposed algorithm.

Highlights

  • Analyzing purchase behavior among various consumer choices with respect to numerous products and services during a single shopping experience to realize possible correlations has been a popular method in order to take the shopping experience on a whole new level

  • The aim is to analyse the significant information embedded in the customer purchase behaviour to recommend new products to them

  • We have developed a recommender system to suggest novel products to the users via the improved utility based association rules

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Summary

A Novel Approach of Product Recommendation Using UtilityBased Association Rules

Stuti Stuti, Jaypee Institute of Information Technology, India Kanika Gupta, Jaypee Institute of Information Technology, India Nishant Srivastava, Jaypee Institute of Information Technology, India Ankita Verma, Jaypee Institute of Information Technology, India

INTRODUCTION
BACKGROUND
MOTIVATION AND PROBLEM STATEMENT
Methodology
Limitation
Findings
CONCLUSION AND FUTURE WORK
Full Text
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