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Offshore Supply Planning in a Rolling Time Horizon

机译:滚动时间范围内的离岸供应计划

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This paper presents a real transportation problem stemming from offshore oil and gas logistics and shows how optimization models used in a rolling horizon simulation framework can be very valuable to assess and improve the operation's performance. With this aim, we study how the Order Selection Problem (OSP), a problem that helps the logistics provider decide which orders to carry to and from the platforms and which to postpone, and the Vessel Routing Problem with Selective Pickups and Deliveries (VRPSPD), that in addition to the order selection also routes the vessels carrying the orders, can be used in a practical planning setting. To quantify and justify the benefits of using the VRPSPD and OSP models in a real planning situation, an industry case based on real data was simulated in a rolling horizon framework and solved for an entire year. In addition to the traditional cost metric used, the focus of this paper lies on the implication these have on other important aspects that are often neglected in traditional optimization models; regularity and level of service. Several strategies for overbooking and postponing orders were also evaluated with respect to their cost, regularity, and level of service.
机译:本文提出了一个来自海上石油和天然气物流的实际运输问题,并说明了在滚动地平线仿真框架中使用的优化模型如何对评估和改善作业性能非常有价值。为此,我们研究了订单选择问题(OSP)(该问题可帮助物流提供商确定哪些订单往返于平台以及哪些订单将被推迟)以及带有选择性取货和交付的船只路由问题(VRPSPD)的问题。 ,除了可以选择订单外,还可以路由载有订单的船只,这可以用于实际的计划设置中。为了量化和证明在实际计划中使用VRPSPD和OSP模型的好处,在滚动框架中模拟了基于实际数据的行业案例,并对其进行了整整一年的解决。除了使用传统的成本指标外,本文的重点还在于这些含义对传统优化模型中通常忽略的其他重要方面;规律性和服务水平。还就其成本,规律性和服务水平对几种超额预定和延迟订单的策略进行了评估。

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