A study of quantification method for important factors based on customer loyalty structure diagram

Kenta Mikawa, Tadayuki Masui, Masayuki Goto

研究成果: Article

抜粋

Recently, it is said building customer loyalty is effective to keep the relationship between customers and companies developing. However due to this relationship's complex characteristics, there are few ways to strengthen loyalty. Consequently, it is important for company markets to grasp and calculate the important factors of customer loyalty. In order to analyze complex customer characteristics or their loyalty, one needs to analyze not only data from questionnaires, but also free-format text data. This is because the respondent can answer their opinion freely, so the collection of more information and the finding of new opinions can be expected. Recently, due to the development of information technology, people can obtain or store enormous amounts of such customer data easily. This research analyzes this free-format text data by using morphological analysis, one of the methods of natural language processing. Using this result, we have reconstructed the customer loyalty structure diagram, by using a method of analyzing customer loyalty, which was proposed by previous research. In addition to evaluating the important index of customer loyalty, we propose a method of calculation using the customer loyalty structure diagram. Moreover, this research is aiming for the evaluation of the difference between strongly satisfied and unsatisfied customers. We also investigate the difference of characteristics between product categories. From those results, corporate marketers can know what the key factors of customer loyalty are important and make a strategy to get excellent customers.

元の言語English
ページ(範囲)365-375
ページ数11
ジャーナルJournal of Japan Industrial Management Association
59
発行部数5
出版物ステータスPublished - 2008 12 1
外部発表Yes

ASJC Scopus subject areas

  • Strategy and Management
  • Management Science and Operations Research
  • Industrial and Manufacturing Engineering
  • Applied Mathematics

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