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Optimal allocation of aviation security screening devices

机译:航空安检设备的最佳配置

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Recent advances in aviation security screening technologies have presented a new challenge in optimally allocating these devices across a set of airports. Following check-in at the ticket counter, self-service kiosk, or airline website application, each passenger is assigned to a security screening class through an automated passenger prescreening system based on their measured perceived risk level. The class to which a passenger is assigned can be used to determine how this passenger’s baggage will be screened by a set of security devices and procedures. In this paper, an explosive screening device allocation model is formulated as a nonlinear integer program to assign both the type of and number of devices to each class at each airport such that the total security is maximized, given a set of budget, resource, and passenger throughput constraints. A Dantzig-Wolfe decomposition approach is used to transform the nonlinear program into a binary integer program by redefining the binding constraint associated with the number of individual devices allocated across all airports. Computational results are provided for several randomly generated problems to demonstrate that the resulting binary integer program can be quickly solved to optimality.
机译:航空安全检查技术的最新进展提出了在一组机场中最佳分配这些设备的新挑战。在售票柜台,自助服务亭或航空公司网站应用程序中办理登机手续后,将根据其所测得的感知风险水平,通过自动乘客预检系统将每位乘客分配到一个安全检查级别。可以将分配给乘客的舱位用于确定如何通过一组安全设备和程序来检查该乘客的行李。在本文中,爆炸物筛查设备分配模型被公式化为非线性整数程序,用于在每个机场分配给每个预算,资源和资源的情况下,将设备的类型和数量同时分配给每个机场的每个类别,从而使总体安全最大化。旅客吞吐量约束。 Dantzig-Wolfe分解方法用于通过重新定义与在所有机场分配的单个设备的数量相关的绑定约束,将非线性程序转换为二进制整数程序。提供了针对几个随机生成的问题的计算结果,以证明所生成的二进制整数程序可以快速求解为最优。

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