Applied Mathematics and Nonlinear Sciences
Journal license

Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 9, Issue 1


Published
on

January 31, 2024


Pages


DOI

Article

Consumer Satisfaction Evaluation System for Route Planning of Urban Tourist Attractions Based on Multiple Data Fusion


Authors

Yao Yu Affiliation:
Department of Information Engineering, Jingdezhen University, Jingdezhen, Jiangxi, 333000, China.
and Lang Liu Affiliation:
Department of Information Engineering, Jingdezhen University, Jingdezhen, Jiangxi, 333000, China.


Abstract

To explore consumer feedback on route planning of urban tourist attractions in order to better propose optimization measures. This paper establishes the consumer satisfaction evaluation index system, determines the index weights based on the G1 method, CRITIC method and game theory method, and carries out evaluation calculation through the consumer satisfaction evaluation cloud model. This paper analyzes the satisfaction of consumers of different genders, age groups and incomes on each evaluation index and explores the credibility of this paper’s method by comparing and analyzing it with the satisfaction of online reviews. In terms of travel shopping satisfaction, the cloud droplets have the highest degree of aggregation, between 0.75-0.88 and a lower degree of aggregation, between 0.49-0.75, indicating that consumers are very satisfied. At the same time, the consumer satisfaction analyzed in this paper and the network review data satisfaction as a whole converge; the network review satisfaction and this paper’s analysis of the satisfaction in tourism services are around 84%-86%. The consumer satisfaction evaluation method constructed in this paper has a high degree of feasibility and accuracy.


Keywords

G1 method, CRITIC method, Game theory method, Evaluation system, Satisfaction, 03D03


Citation

Yu, Y. & Liu, L. (2024). Consumer satisfaction evaluation system for route planning of urban tourist attractions based on multiple data fusion. Applied Mathematics and Nonlinear Sciences, 9(1). https://doi.org/10.2478/amns-2024-0054

Published by: Engineering Journals

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