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Dynamic optimization of emergency resource scheduling in a large-scale maritime oil spill accident

机译:大规模海运泄漏事故中应急资源调度的动态优化

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摘要

Current maritime emergency logistics studies on oil spills are largely conducted based on static analysis to optimize resource scheduling. This does not suitably address the practical industrial demand, where the oil spill risk in nature dynamically depends on the motion of oil films. To better simulate the reality, this paper aims to conduct a study on a novel dynamic multi-objective location-routing model with split delivery considering practical characteristics, such as the time-varying demands of contaminated areas, uncertainty in the state of associated transportation networks and interrelationship between the changes in spilled oil films and emergency operations, which all result from the dynamic motion of oil films at sea. To address model complexity, we propose a two-stage optimization model, whereby a hybrid heuristic algorithm is developed to obtain Pareto solutions. To demonstrate the proposed model and approaches, a case study involving a series of sensitivity analyses is presented to highlight the importance of the proposed model and determines its implications.
机译:目前的海上应急物流研究基于静态分析来优化资源调度,大大进行了漏油泄漏。这不适合解决实际的工业需求,其中石油泄漏性质的风险动态取决于油膜的运动。为了更好地模拟现实,本文旨在考虑拆分递送的新型动态多目标定位路由模型研究,考虑实际特征,如污染区域的时变需求,相关交通网络状态的不确定性溢油膜和应急行动变化之间的相互关系,这均由海上油膜的动态运动产生。为了解决模型复杂性,我们提出了一种两级优化模型,由此开发了混合启发式算法以获得Pareto解决方案。为了展示所提出的模型和方法,提出了涉及一系列敏感性分析的案例研究以突出所提出的模型的重要性并确定其含义。

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