Segmentation in Structural Equation Modeling Using a Combination of Partial Least Squares and Modified Fuzzy Clustering

被引:0
作者
Mukid, Moch Abdul [1 ,2 ]
Otok, Bambang Widjanarko [1 ]
Suharsono, Agus [1 ]
机构
[1] Inst Teknol Sepuluh Nopember, Fac Sci & Data Analyt, Dept Stat, Jl Arif Rahman Hakim, Surabaya 60111, Indonesia
[2] Diponegoro Univ, Fac Sci & Math, Dept Stat, Jl Prof Sudarto 13, Tembalang 50275, Semarang, Indonesia
来源
SYMMETRY-BASEL | 2022年 / 14卷 / 11期
关键词
unobserved heterogeneity; clusterwise PLS; path modeling; CUSTOMER SATISFACTION; CLASSIFICATION;
D O I
10.3390/sym14112431
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The application of a structural equation modeling (SEM) assumes that all data follow only one model. This assumption may be inaccurate in certain cases because individuals tend to differ in their responses, and failure to consider heterogeneity may threaten the validity of the SEM results. This study focuses on unobservable heterogeneity, where the difference between two or more data sets does not depend on observable characteristics. In this study, we propose a new method for estimating SEM parameters containing unobserved heterogeneity within the data and assume that the heterogeneity arises from the outer model and inner model. The method combines partial least squares (PLS) and modified fuzzy clustering. Initially, each observation was randomly assigned weights in each selected segment. These weights continued to be iteratively updated using a specific objective function. The sum of the weighted residual squares resulting from the outer and inner models of PLS-SEM is an objective function that must be minimized. We then conducted a simulation study to evaluate the performance of the method by considering various factors, including the number of segments, model specifications, residual variance of endogenous latent variables, residual variance of indicators, population size, and distribution of latent variables. From the simulation study and its application to the actual data, we conclude that the proposed method can classify observations into correct segments and precisely predict SEM parameters in each segment.
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页数:23
相关论文
共 42 条
[1]   Customer satisfaction and loyalty analysis with classification algorithms and Structural Equation Modeling [J].
Aktepe, Adnan ;
Ersoz, Suleyman ;
Toklu, Bilal .
COMPUTERS & INDUSTRIAL ENGINEERING, 2015, 86 :95-106
[2]  
Ansari A., 2014, SCI, V19, P347, DOI [10.1287/mksc.19.4.328.11789, DOI 10.1287/MKSC.19.4.328.11789]
[3]   Exploring the antecedents of institutional effectiveness: a case study of higher education universities in India [J].
Bai Gokarna, Vidya ;
Mendon, Suhan ;
Thonse Hawaldar, Iqbal ;
Spulbar, Cristi ;
Birau, Ramona ;
Nayak, Smitha ;
Manohar, Maanya .
ECONOMIC RESEARCH-EKONOMSKA ISTRAZIVANJA, 2022, 35 (01) :1162-1182
[4]   New modifications and applications of fuzzy C-means methodology [J].
Berget, Ingunn ;
Mevik, Bjorn-Helge ;
Næs, Tormod .
COMPUTATIONAL STATISTICS & DATA ANALYSIS, 2008, 52 (05) :2403-2418
[5]   Penalty parameter selection for hierarchical data stream clustering [J].
Bhagat, Amol ;
Kshirsagar, Nilesh ;
Khodke, Priti ;
Dongre, Kiran ;
Ali, Sadique .
PROCEEDINGS OF INTERNATIONAL CONFERENCE ON COMMUNICATION, COMPUTING AND VIRTUALIZATION (ICCCV) 2016, 2016, 79 :24-31
[6]  
Bollen KA., 1989, Structural equations with latent variables, DOI DOI 10.1002/9781118619179
[7]   Teacher self-efficacy, instructional quality, and student motivational beliefs: An analysis using multilevel structural equation modeling [J].
Buric, Irena ;
Kim, Lisa E. .
LEARNING AND INSTRUCTION, 2020, 66
[8]   Structural equation modelling of determinants of customer satisfaction of mobile network providers: Case of Kolkata, India [J].
Chakraborty, Shibashish ;
Sengupta, Kalyan .
IIMB MANAGEMENT REVIEW, 2014, 26 (04) :234-248
[9]  
Chin WW, 1998, QUANT METH SER, P295
[10]   Factors influencing the adoption of sharing economy in B2B context in China: Findings from PLS-SEM and fsQCA [J].
Chuah, Stephanie Hui-Wen ;
Tseng, Ming-Lang ;
Wu, Kuo-Jui ;
Cheng, Cheng-Feng .
RESOURCES CONSERVATION AND RECYCLING, 2021, 175