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Two-Level Integrated Optimization System for Planning of Emergency Evacuation

机译:应急疏散规划的二级综合优化系统

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This paper presents a two-level integrated optimization system for use in generating the candidate set of optimal evacuation plans that serve as the input for simulation-based evacuation systems. In the proposed system, the high-level optimization aims to maximize the throughput during the specified evacuation duration, and the low-level optimization is intended to minimize the total travel time as well as the waiting time for the entire operation if the specified duration is sufficient for meeting all evacuation demands. To effectively represent traffic flow relations with mathematical formulations, this paper employs the cell transmission concept, but with a revised formulation for large-scale network applications. The performance of the proposed models and their applicability has been tested with a microscopic simulation program that replicates the Ocean City evacuation network. Evaluation results from these numerical studies have demonstrated the promising properties of the proposed integrated optimization system.
机译:本文提出了一个两级集成优化系统,用于生成最佳疏散计划的候选集,以作为基于模拟的疏散系统的输入。在所提出的系统中,高级优化旨在在指定疏散时间段内最大化吞吐量,而低级优化旨在在指定时间段内将总行程时间以及整个操作的等待时间最小化足以满足所有疏散要求。为了用数学公式有效地表示交通流量关系,本文采用了信元传输的概念,但对大型网络应用采用了修正的公式。拟议模型的性能及其适用性已通过复制大洋城疏散网络的微观仿真程序进行了测试。这些数值研究的评估结果表明,所提出的集成优化系统具有令人鼓舞的特性。

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