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An extended bilevel programming model and its kth-best algorithm for dynamic decision making in emergency situations

机译:紧急情况下动态决策的扩展双层规划模型及其kth最佳算法

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Linear bilevel programming has been studied for many years and applied in different domains such as transportation, economics, engineering, environment, and telecommunications. However, there is lack of attention of the impacts on dynamic decision making with abrupt or unusual events caused by unpredictable natural environment or human activities (e.g. Tsunami, earthquake, and malicious or terrorist attacks). In reality these events could happens more often and have more significant impacts on decision making in an increasingly complex and dynamic world. This paper addresses this unique problem by introducing a concept of Virtual Follower (VF). An extended model of bilevel multi-follower programming with a virtual follower (BLMFP-VF) is defined and the kth-best algorithm for solving this problem is proposed. An example is given to illustrate the working of the extended model and approach.
机译:线性双层编程已经研究了很多年,并应用于交通,经济,工程,环境和电信等不同领域。但是,人们缺乏对自然环境或人类活动(例如海啸,地震以及恶意或恐怖袭击)造成的突发或异常事件对动态决策的影响的关注。实际上,在日益复杂和动态的世界中,这些事件可能会更频繁地发生,并对决策产生更大的影响。本文通过介绍虚拟追随者(VF)的概念解决了这个独特的问题。定义了带有虚拟跟随器的双层多跟随者编程的扩展模型(BLMFP-VF),并提出了解决该问题的第k个最佳算法。给出了一个示例来说明扩展模型和方法的工作。

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