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Game theoretic resource allocation model for designing effective traffic safety solution against drunk driving

机译:淘汰醉酒驾驶有效交通安全解决方案的游戏理论资源分配模型

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摘要

To reduce the number of deaths and injuries due to drunk driving (also referred to as drink driving, driving while intoxicated, and driving under the influence of alcohol in the literature), many countries have deployed public safety resources to inspect traffic network. However, challenges remain in allocating limited public safety resources to the significantly large traffic networks. In this paper, we propose an optimal public safety resource allocation scheme to inspect drunk driving. To highlight the utilization of limited public safety resources, first, we model the issue of drunk driving as a defender-attacker Stackelberg game. In the game, the law enforcement agency (the defender) allocates public safety resources in a traffic network to arrest drunk drivers (the attackers), and the attacker seeks to choose a feasible route given the defender's strategy to maximize the escape probability. Second, we develop an effective approach to compute the optimal defender strategy based on a double oracle framework. Third, we analyze the complexity of the defender oracle problem. Then, we conduct simulations on directed graphs, which are abstracted from the city traffic network in Dalian, China, to demonstrate that our scheme achieves a robust solution and higher utility, and is capable of scaling up to handle realistic-sized drunk-driving problems. (C) 2020 Elsevier Inc. All rights reserved.
机译:为了减少醉酒驾驶导致的死亡人数和损伤(也称为饮料驾驶,令人陶醉的驾驶,并在文学中的酒精的影响下驾驶),许多国家部署了公共安全资源来检查交通网络。然而,挑战仍然在为大量大量的交通网络分配有限的公共安全资源。在本文中,我们提出了最佳的公共安全资源分配方案来检查醉酒驾驶。为了强调有限公共安全资源的利用,首先,我们将醉酒驾驶的问题模拟作为防御者攻击者Stackelberg游戏。在游戏中,执法机构(Defender)分配交通网络中的公共安全资源以逮捕醉酒司机(攻击者),并且攻击者旨在选择可行的路线,因为捍卫者的策略最大化逃避概率最大化。其次,我们开发了一种基于双甲骨文框架来计算最佳防御者战略的有效方法。第三,我们分析了捍卫者Oracle问题的复杂性。然后,我们对来自中国大连市的城市交通网络提取的指示图进行了仿真,以证明我们的计划实现了强大的解决方案和更高的效用,并且能够扩展以处理现实大小的醉酒驾驶问题。 (c)2020 Elsevier Inc.保留所有权利。

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