自主水下航行器风险评估的中性MCDM方法

Shimaa S. Mohamed, A. Abdel-Monem, Alshaimaa A. Tantawy
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引用次数: 0

摘要

由于它在几个工业和军事上的用途,研究人员集中在开发自主水下航行器(auv)上。然而,由于水下环境的多样性,AUV导航仍然是一个难以解决的挑战。使用auv或自主水下航行器并非没有故障、生态风险、通信丢失、网络安全风险、碰撞等危险。评估这些风险的标准有很多——技术上的、操作上的、经济上的和监管上的。因此,多准则决策(MCDM)方法被用于处理这些不同的准则。层次分析法(AHP)是MCDM的一种方法,可用于计算各指标的权重。AHP与单值嗜中性集(SVNS)相结合,以处理评估过程中的不确定性数据。计算各指标的权重后,对auv的风险进行排序。结果表明,故障是风险最高的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutrosophic MCDM Methodology for Risk Assessment of Autonomous Underwater Vehicles
Due to its usefulness in several industries and the military, researchers have concentrated on developing autonomous underwater vehicles (AUVs). However, AUV navigation continues to be a difficult challenge to solve owing to the variety of underwater settings. The usage of AUVs, or autonomous underwater vehicles, is not without dangers like malfunction, ecological risks, loss of communications, cybersecurity risks, collisions, and others. There are many criteria to assess these risks technical, operational, economic, and regulatory. So, the methods of multi-criteria decision-making (MCDM) is used to deal with these various criteria. The analytical hierarchy process (AHP) method is an MCDM methodology, that can be used to compute the weights of criteria. The AHP is integrated with the single-valued neutrosophic set (SVNS) to deal with uncertain data in the assessment process. The risks of AUVs are ranked after computing the weights of the criteria. The results show that malfunctions are the highest risk.    
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