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Spectral risk measure minimization in hazardous materials transportation

机译:最大限度地减少有害物质运输中的光谱风险措施

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摘要

Due to catastrophic consequences of potential accidents in hazardous materials (hazmat) transportation, a risk-averse approach for routing is necessary. In this article, we consider spectral risk measures, for risk-averse hazmat routing, which overcome challenges posed in the existing approaches such as conditional value-at-risk. In spectral risk measures, one can define the spectrum function precisely to reflect the decision maker's risk preference. We show that spectral risk measures can provide a unified routing framework for popular existing hazmat routing methods based on expected risk, maximum risk, and conditional value-at-risk. We first consider a special class of spectral risk measures, for which the spectrum function is represented as a step function. We develop a mixed-integer linear programming model in hazmat routing to minimize these special spectral risk measures and propose an efficient search algorithm to solve the problem. For general classes of spectral risk measures, we suggest approximation methods and path-based approaches. We propose an optimization procedure to approximate general spectrum functions using a step function. We illustrate the usage of spectral risk measures and the proposed computational approaches using data from real road networks.
机译:由于危险材料(危险品)运输中潜在事故的灾难性后果,必须采用规避风险的路线。在本文中,我们考虑了针对风险规避危险品路由的频谱风险度量,它克服了现有方法(如条件风险值)带来的挑战。在频谱风险度量中,可以精确定义频谱函数以反映决策者的风险偏好。我们表明,频谱风险度量可以根据预期风险,最大风险和有条件的风险价值为流行的现有危险品路由方法提供统一的路由框架。我们首先考虑一类特殊的频谱风险度量,其频谱函数表示为阶跃函数。我们在危险品路由中开发了混合整数线性规划模型,以最小化这些特殊的频谱风险度量,并提出了一种有效的搜索算法来解决该问题。对于一般类别的频谱风险度量,我们建议采用近似方法和基于路径的方法。我们提出了一种优化程序,以使用阶跃函数近似通用频谱函数。我们说明了频谱风险度量的使用以及使用来自真实道路网络的数据提出的计算方法。

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