Research on Highway Slope Stability Based on Hierarchical Fuzzy Comprehensive Evaluation Method

The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional monitoring of highway slopes and reduce the loss caused by road slope disasters. From the perspective of the system, based on the geological structur...

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Published inIOP conference series. Materials Science and Engineering Vol. 569; no. 3; pp. 32003 - 32008
Main Authors Zhou, Xiaorong, Xu, Tianxing, Shi, Qianghua, Zheng, Kai, Sheng, Jiaxing
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.07.2019
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Abstract The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional monitoring of highway slopes and reduce the loss caused by road slope disasters. From the perspective of the system, based on the geological structure, topography and hydrology of highway slopes in Guangxi, this study uses the analytic hierarchy process to establish the stability of highway slopes based on the analysis of the characteristics of highway slopes, survey data, and factors affecting stability. This paper analyzes the structural model of the influencing factor layer, calculates the weights of the influencing factors of the road slope stability, combines the fuzzy relationships between the factors, and uses the comprehensive evaluation principle in fuzzy mathematics to realize the evaluation of slope stability. The results of an example analysis show that the evaluation method is reliable and effective.
AbstractList The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional monitoring of highway slopes and reduce the loss caused by road slope disasters. From the perspective of the system, based on the geological structure, topography and hydrology of highway slopes in Guangxi, this study uses the analytic hierarchy process to establish the stability of highway slopes based on the analysis of the characteristics of highway slopes, survey data, and factors affecting stability. This paper analyzes the structural model of the influencing factor layer, calculates the weights of the influencing factors of the road slope stability, combines the fuzzy relationships between the factors, and uses the comprehensive evaluation principle in fuzzy mathematics to realize the evaluation of slope stability. The results of an example analysis show that the evaluation method is reliable and effective.
Abstract The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional monitoring of highway slopes and reduce the loss caused by road slope disasters. From the perspective of the system, based on the geological structure, topography and hydrology of highway slopes in Guangxi, this study uses the analytic hierarchy process to establish the stability of highway slopes based on the analysis of the characteristics of highway slopes, survey data, and factors affecting stability. This paper analyzes the structural model of the influencing factor layer, calculates the weights of the influencing factors of the road slope stability, combines the fuzzy relationships between the factors, and uses the comprehensive evaluation principle in fuzzy mathematics to realize the evaluation of slope stability. The results of an example analysis show that the evaluation method is reliable and effective.
Author Shi, Qianghua
Sheng, Jiaxing
Xu, Tianxing
Zheng, Kai
Zhou, Xiaorong
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Snippet The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional...
Abstract The highway slope stability monitoring based on the Internet of Things technology can effectively realize the accurate and real-time three-dimensional...
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StartPage 32003
SubjectTerms Analytic hierarchy process
Hydrology
Internet of Things
Monitoring
Slope stability
Stability analysis
Structural models
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