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A New Approach Using Hedge Algebra Combined with Kansei Evaluation for Intelligent Disaster Decision Support and Its Application

机译:一种新方法,采用树篱代数结合智能灾害决策支持及其应用的kansei评估

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Research into finding the the optimal path(s) for autonomous vehicle services in the traversing of disaster has gained traction both nationally and internationally. In disaster response services in cities, there are limited ways to enforce priorities for emergency service vehicles, the focus being on the identification of the best optimal routes to provide disaster control services in disaster zones which are characterised by inherent uncertainty. Autonomous decisions become significant to quantify linguistics used to make the optimal decision for controlling emergency service vehicles for the problems in disaster zones. In this paper, we present a new approach which implements autonomous emergency service vehicle control using hedge algebras and Kansei evaluation in decision-making to enforce optimal service vehicle control in cities. The proposed model is designed to quantify qualitative factors together with human sensibilities in decision-making using Kansei evaluation together with preferences in decision support. The experimental results show that the posited approach achieves a significant improvement for optimal decision-making in real-time emergency service vehicle control in disaster situations.
机译:在灾难中寻找自主车辆服务的最佳路径的研究已经在全国和国际上获得了牵引力。在城市的灾害响应服务中,有限的方法来强制执行紧急服务车辆的优先事项,重点是在确定最佳最佳路线的识别,以便在灾区中提供灾害控制服务的固有不确定性。自治决策变得巨大,以量化用于对控制灾区问题控制紧急服务车辆的最佳决策。在本文中,我们提出了一种新的方法,可以使用对冲代数和KANSEI评估实现自主应急服务车辆控制,以在城市执行最优服务车辆控制。该拟议的模型旨在使定性因素与人类敏感性一起定制,在决策中使用Kansei评估以及决策支持的偏好。实验结果表明,假定方法实现了灾害情况下实时紧急服务车辆控制的最佳决策的显着改进。

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