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Optimal Placement of Detectors to Minimize Casualties on a Manmade Attack: Abstract ID: 788899

机译:探测器的最佳放置,以最大限度地减少人工攻击伤亡:摘要ID:788899

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摘要

This study proposes a mathematical model to optimally locate a set of detectors in such a way that the expected number of casualties in a given threat area can be minimized. Detectors may not be perfectly reliable, which is often a function of how long an attacker would stay within the detectors effective detection radius. To accurately detect any threat event and to avoid any false alarm, we assume that a set of backup/secondary detectors are available to support the primary detectors. The problem is formulated as a nonlinear binary integer programming model and then solved as a linearized branch-and-bound algorithm. A number of sensitivity analyses are performed to illustrate the robustness of the model and to draw key managerial insights. Experimental results reveal that a two-layer detection will significantly minimize the expected number of casualties in a threat area over a one-layer detection problem.
机译:本研究提出了一种数学模型,以使一组检测器最佳地定位,使得可以最小化给定威胁区域中的预期伤亡人数。 探测器可能不完全可靠,这通常是攻击者将在探测器内保持有效检测半径的函数。 要准确检测任何威胁事件并避免任何错误警报,我们假设可以使用一组备份/辅助检测器来支持主检测器。 该问题被制定为非线性二进制整数编程模型,然后解决了作为线性化分支和绑定算法。 执行许多敏感性分析以说明模型的稳健性并绘制关键管理洞察力。 实验结果表明,在一层检测问题上,双层检测将显着降低威胁区域中的预期伤亡人数。

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