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Efficient negative cycle-canceling algorithm for finding the optimal traffic routing for network evacuation with nonuniform threats

机译:高效的负周期取消算法,可为非均匀威胁的网络疏散找到最佳流量路由

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摘要

A new network flow solution method is designed to determine optimal traffic routing efficiently for the evacuation of networks with several threat zones and with nonuniform threat levels across zones. The objective is to minimize total exposure (as duration and severity) to the threat for all evacuees during the evacuation. The problem is formulated as a minimum cost dynamic flow problem coupled with traffic dynamic constraints. The traffic flow dynamic constraints are enforced by the well-known point queue and spatial queue models in a time-expanded network presentation. The key to the efficiency of the proposed method is that, for any feasible solution, the algorithm can find and can cancel multiple negative cycles (including the cycle with the largest negative cost) with a single shortest path calculation made possible by applying a proposed transformation to the original problem. A cost transformation function and a multisource shortest path algorithm are proposed to facilitate the efficient detection and cancelation of negative cycles. Zone by zone, negative cycles are canceled at the border links of the zones. The solution method is proved to be optimal. The algorithm is implemented, tested, and verified to be optimal for a midsized example problem.
机译:设计了一种新的网络流解决方案方法,可以有效地确定最佳流量路由,以疏散具有多个威胁区域且威胁区域之间的威胁级别不一致的网络。目的是使疏散期间所有撤离人员的威胁总暴露量(持续时间和严重程度)降至最低。该问题被表述为最小成本动态流问题以及交通动态约束。流量动态约束由时间扩展的网络表示中的众所周知的点队列和空间队列模型强制执行。提出的方法的效率的关键在于,对于任何可行的解决方案,该算法都可以找到并取消多个负周期(包括负成本最大的周期),并且可以通过应用建议的变换进行一次最短路径计算原来的问题。提出了成本转换函数和多源最短路径算法,以促进负周期的有效检测和消除。逐个区域,在区域的边界链接处取消了负循环。求解方法被证明是最优的。该算法的实现,测试和验证对中型示例问题是最优的。

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