Sustainable Transportation Systems Analysis using WASPAS MCDM Method

C. Venkateswaran, M. Ramachandran, M. Selvam
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引用次数: 2

Abstract

In this form of analysis the WASPAS method is the most ideal solution Short-distance and negative-best The solution with the longest distance from the solution Determines, but the comparison of these distances Does not consider importance. From the result it is seen that Reliability is the first rank whereas is the Safety is having the lowest rank. Sustainable transportation systems are the need of modern times. There has been an unexpected growth in the number of transportation activities over years and the trend is expected to continue in the coming years. This has obviously associated environmental costs like air pollution, noise, etc. which is degrading the quality of life in modern cities. To cope with this crisis, municipal administrations are investing in sustainable transportation systems that are not only efficient, robust and economical but also friendly towards the environment. Sustainability has become an overarching concern for transportation policy and planning around the world. This article presents an approach for urban transport sustainability performance evaluation using fuzzy logic. This article presents a model for transport sustainability performance evaluation. Appropriate transport sustainability indicators were identified based on literature. Recently, sustainability has become a very important research area in transportation because of the dependencies between transportation, economic, and environmental systems. Alternative: Safety, Security, Reliability, Air pollutants, Noise. .Evaluation Preference: Cost benefits analysis optimization models, Life cycle analysis, Data analysis. WASPAS-Weighted Aggregated Sum Product Assessment. In this method from WASPAS in Sustainable Transportation Systems. From the result it is seen that Reliability and is the first rank whereas the Safety got is having the lowest rank.
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基于WASPAS MCDM方法的可持续交通系统分析
在这种形式的分析中,WASPAS方法是最理想的短距离和负最优解,用距离最远的解来确定,但这些距离的比较不考虑重要性。从结果可以看出,可靠性排名第一,而安全性排名最低。可持续的交通系统是现代的需要。多年来,交通活动的数量出现了意想不到的增长,预计这一趋势将在未来几年继续下去。这显然与空气污染、噪音等环境成本有关,这些成本正在降低现代城市的生活质量。为了应对这一危机,市政当局正在投资于可持续交通系统,这些系统不仅高效、稳健、经济,而且对环境友好。可持续性已成为世界各地交通政策和规划的首要关注点。本文提出了一种基于模糊逻辑的城市交通可持续发展绩效评价方法。本文提出了一个交通可持续发展绩效评价模型。根据文献确定了适当的运输可持续性指标。由于交通系统、经济系统和环境系统之间的相互依存关系,近年来,可持续发展已成为交通领域一个非常重要的研究领域。可选:安全性、安全性、可靠性、空气污染物、噪声。评价偏好:成本效益分析、优化模型、生命周期分析、数据分析。加权汇总和产品评估。这种方法来自WASPAS在可持续交通系统中的应用。从结果可以看出,可靠性和是排名第一,而安全性得到了最低的排名。
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