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Exponential Rank Differential Evolution Algorithm for Disaster Emergency Vehicle Path Planning

机译:灾害紧急车辆路径规划的指数等级差分演化算法

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摘要

When disasters happen, victims suffer from lots of miseries. Vehicles are used to carry relief supplies for these victims. However, these vehicles are subject to threats as roads and bridges are often destroyed by these disasters. To dispatch vehicles safely and minimize the misery of victims, a disaster emergency vehicle path planning model is proposed by introducing the deprivation cost function and two constraints. One constraint is the risk of the route, and the other is the angle of the vehicle. A differential evolution algorithm based on the exponential selection is developed to optimize the model. The proposed algorithm uses the exponential ranking method, making individuals have exponential probability as parents enter into the mutation stage. The approach improves the exploitation capacity while maintain the exploration ability of the algorithm. Three disaster scenarios in three-dimension are used to do simulations. The experimental results have verified that our proposed model can deal well with the vehicle path planning problem in disaster emergency management. The proposed algorithm has acquired superior performances compared with differential evolution variant algorithms.
机译:当灾害发生时,受害者遭受了许多纪念品。车辆用于为这些受害者提供救济物资。然而,这些车辆受到威胁的威胁,因为道路和桥梁往往被这些灾难摧毁。为了安全地派遣车辆并尽量减少受害者的痛苦,通过引入剥夺成本函数和两个约束来提出灾难应急车道培训模型。一个约束是路线的风险,另一个是车辆的角度。基于指数选择的差分演进算法是开发的,以优化模型。该算法使用指数排名方法,使个人具有指数概率,因为父母进入突变阶段。该方法提高了开发能力,同时保持算法的勘探能力。三维的三种灾难场景用​​于进行仿真。实验结果已经证实,我们的拟议模型可以与灾难应急管理中的车辆路径规划问题很好。与差分演进变体算法相比,该算法已经获得了优异的性能。

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