Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model

Green development of agriculture and rural areas (GDARA) is an essential part of rural revitalization and high-quality development. Based on 2011 to 2020 provincial panel data from China, the entropy-based Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) model is constructe...

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Main Authors: Li Wang, Nan Li, Qian Xie
Format: Article
Language:English
Published: Elsevier 2024-03-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844024032791
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author Li Wang
Nan Li
Qian Xie
author_facet Li Wang
Nan Li
Qian Xie
author_sort Li Wang
collection DOAJ
description Green development of agriculture and rural areas (GDARA) is an essential part of rural revitalization and high-quality development. Based on 2011 to 2020 provincial panel data from China, the entropy-based Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) model is constructed to measure the level of GDARA, finding that the overall level during the sample period was positive. Then the regional differences mainly from intra-regional were revealed by the methods of Dagum Gini coefficient and Kernel density estimation and were shrinking overall. Besides, the results of Markov chain transfer matrix show the dynamic characteristics clearly, which the low-level regions shift to the middle and high levels with a greater probability. The results of the spatial autocorrelation test display that GDARA has a spatial clustering effect. Finally, the industrial upgrading and the business income of leisure agriculture are respectively proven to hinder GDARA at most by the Obstacle degree model empirically. Based on a series of empirical tests, a few relevant policy recommendations are proposed to promote the road to strong agriculture and rural areas in China.
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spelling doaj.art-0ccf3b643def4dbebb262844e2691e202024-03-17T07:57:46ZengElsevierHeliyon2405-84402024-03-01105e27248Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS modelLi Wang0Nan Li1Qian Xie2School of Economics & Management, Northwest University, Xi'an 710127, ChinaSchool of Economics & Management, Northwest University, Xi'an 710127, ChinaCorresponding author.; School of Economics & Management, Northwest University, Xi'an 710127, ChinaGreen development of agriculture and rural areas (GDARA) is an essential part of rural revitalization and high-quality development. Based on 2011 to 2020 provincial panel data from China, the entropy-based Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) model is constructed to measure the level of GDARA, finding that the overall level during the sample period was positive. Then the regional differences mainly from intra-regional were revealed by the methods of Dagum Gini coefficient and Kernel density estimation and were shrinking overall. Besides, the results of Markov chain transfer matrix show the dynamic characteristics clearly, which the low-level regions shift to the middle and high levels with a greater probability. The results of the spatial autocorrelation test display that GDARA has a spatial clustering effect. Finally, the industrial upgrading and the business income of leisure agriculture are respectively proven to hinder GDARA at most by the Obstacle degree model empirically. Based on a series of empirical tests, a few relevant policy recommendations are proposed to promote the road to strong agriculture and rural areas in China.http://www.sciencedirect.com/science/article/pii/S2405844024032791Green development in agriculture and rural areasIndicator systemSpatial and temporal characteristicsObstacle factorSpatial autocorrelation
spellingShingle Li Wang
Nan Li
Qian Xie
Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
Heliyon
Green development in agriculture and rural areas
Indicator system
Spatial and temporal characteristics
Obstacle factor
Spatial autocorrelation
title Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
title_full Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
title_fullStr Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
title_full_unstemmed Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
title_short Dynamic evolution and obstacle factor analysis of green development in China's agriculture and rural areas based on entropy-based TOPSIS model
title_sort dynamic evolution and obstacle factor analysis of green development in china s agriculture and rural areas based on entropy based topsis model
topic Green development in agriculture and rural areas
Indicator system
Spatial and temporal characteristics
Obstacle factor
Spatial autocorrelation
url http://www.sciencedirect.com/science/article/pii/S2405844024032791
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AT nanli dynamicevolutionandobstaclefactoranalysisofgreendevelopmentinchinasagricultureandruralareasbasedonentropybasedtopsismodel
AT qianxie dynamicevolutionandobstaclefactoranalysisofgreendevelopmentinchinasagricultureandruralareasbasedonentropybasedtopsismodel