AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method

Aiming at the location research blank of the AG600 amphibious aircraft marine rescue base, the location decision index system of the AG600 is established, and the AG600 location decision model based on the interval intuitionistic fuzzy theory and improved TOPSIS method is constructed. Through invest...

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Main Authors: Baoku Du, Wei Xiong, Haitao Wang, Changle Sun, Hongwang Du
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9850991/
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author Baoku Du
Wei Xiong
Haitao Wang
Changle Sun
Hongwang Du
author_facet Baoku Du
Wei Xiong
Haitao Wang
Changle Sun
Hongwang Du
author_sort Baoku Du
collection DOAJ
description Aiming at the location research blank of the AG600 amphibious aircraft marine rescue base, the location decision index system of the AG600 is established, and the AG600 location decision model based on the interval intuitionistic fuzzy theory and improved TOPSIS method is constructed. Through investigation and statistical analysis, the evaluation system with 10 indices is determined based on applicability, safety, and accessibility, and in the process of quantization of index assignment, a fuzzy conversion method for different indices is proposed. The interval intuitionistic fuzzy number of each index is obtained by combining objective calculation and subjective assignment, and the interval intuitionistic fuzzy decision matrix is constructed. The fuzzy entropy method is used to calculate the index weight, and then the improved Technique for Order of Preference by Similarity (TOPSIS) is used to evaluate and rank the rescue bases, the scientific and reasonable location decision results are obtained. Moreover, STOPSIS and WS are used to analyze and demonstrate the sorting inversion problem, and the value is 0.908, which further proves the effectiveness of the method proposed in this paper. Finally, taking the South China Sea islands as an example, the correctness and reliability of the proposed model is verified by comparison with the calculation results of the score function method and the projection method.
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spelling doaj.art-5af00c414e0e4fa98351a54e469fbe892022-12-22T03:43:56ZengIEEEIEEE Access2169-35362022-01-0110824838249210.1109/ACCESS.2022.31966459850991AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS MethodBaoku Du0https://orcid.org/0000-0002-9667-4004Wei Xiong1https://orcid.org/0000-0002-5400-140XHaitao Wang2Changle Sun3Hongwang Du4Naval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, ChinaNaval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, ChinaNaval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, ChinaNaval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, ChinaNaval Architecture and Ocean Engineering College, Dalian Maritime University, Dalian, ChinaAiming at the location research blank of the AG600 amphibious aircraft marine rescue base, the location decision index system of the AG600 is established, and the AG600 location decision model based on the interval intuitionistic fuzzy theory and improved TOPSIS method is constructed. Through investigation and statistical analysis, the evaluation system with 10 indices is determined based on applicability, safety, and accessibility, and in the process of quantization of index assignment, a fuzzy conversion method for different indices is proposed. The interval intuitionistic fuzzy number of each index is obtained by combining objective calculation and subjective assignment, and the interval intuitionistic fuzzy decision matrix is constructed. The fuzzy entropy method is used to calculate the index weight, and then the improved Technique for Order of Preference by Similarity (TOPSIS) is used to evaluate and rank the rescue bases, the scientific and reasonable location decision results are obtained. Moreover, STOPSIS and WS are used to analyze and demonstrate the sorting inversion problem, and the value is 0.908, which further proves the effectiveness of the method proposed in this paper. Finally, taking the South China Sea islands as an example, the correctness and reliability of the proposed model is verified by comparison with the calculation results of the score function method and the projection method.https://ieeexplore.ieee.org/document/9850991/AG600 amphibious aircraftinterval intuitionistic fuzzy TOPSISlocation decisionmarine rescue base
spellingShingle Baoku Du
Wei Xiong
Haitao Wang
Changle Sun
Hongwang Du
AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
IEEE Access
AG600 amphibious aircraft
interval intuitionistic fuzzy TOPSIS
location decision
marine rescue base
title AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
title_full AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
title_fullStr AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
title_full_unstemmed AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
title_short AG600 Maritime Base Location Decision Based on the Interval Intuitionistic Fuzzy TOPSIS Method
title_sort ag600 maritime base location decision based on the interval intuitionistic fuzzy topsis method
topic AG600 amphibious aircraft
interval intuitionistic fuzzy TOPSIS
location decision
marine rescue base
url https://ieeexplore.ieee.org/document/9850991/
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AT haitaowang ag600maritimebaselocationdecisionbasedontheintervalintuitionisticfuzzytopsismethod
AT changlesun ag600maritimebaselocationdecisionbasedontheintervalintuitionisticfuzzytopsismethod
AT hongwangdu ag600maritimebaselocationdecisionbasedontheintervalintuitionisticfuzzytopsismethod