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首页> 外文期刊>Annals of Operations Research >Stochastic programming solution for placement of satellite ground stations
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Stochastic programming solution for placement of satellite ground stations

机译:随机编程解决方案,用于放置卫星地站

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Disaster recovery efforts are enhanced through the collection and dissemination of satellite data, which is downloaded from satellites to ground stations. The optimal ground station locations vary depending on the location of the disaster, but ground station construction occurs before the realization of a disaster. Thus, a stochastic optimization problem arises: decide the location of ground stations before disasters with uncertain locations. We use a stochastic programming approach to select the location of ground stations given a set of potential disaster scenarios. The objective is to maximize the expected amount of data downloaded. The problem formulation consists of a two-stage stochastic program where the first-stage determines the locations of the ground stations and the second-stage schedules the uploading and downloading of data. We solve the problem using the L-shaped method; we find that it significantly outperforms solving the deterministic equivalent problem directly. We also find that an alternate second-stage formulation significantly improves solution time. The optimized set of ground stations found by our algorithm is compared to the set of ground stations operated by the National Oceanic and Atmospheric Administration's; results confirm that the current placement is effective and demonstrate the benefit in adding additional ground stations.
机译:通过收集和传播卫星数据的收集和传播,灾难恢复工作得到了增强,从卫星从卫星到地面站下载。最佳地站位置根据灾难的位置而变化,但在实现灾难之前发生地面施工。因此,出现了随机优化问题:在灾害与不确定位置的灾害前确定地站的位置。我们使用随机编程方法来选择地面站的位置给定一组潜在的灾难场景。目标是最大化下载的预期数据量。问题制定包括一个两级随机程序,其中第一阶段确定地面站的位置,第二阶段调度数据的上传和下载数据。我们用L形方法解决问题;我们发现它显着优于直接解决确定性等效问题。我们还发现替代的第二阶段配方显着改善了解决时间。通过我们算法发现的优化的地面站,与国家海洋和大气管理局运营的一组地面站进行了比较;结果证实,当前的展示位置是有效的,并证明添加额外的地面站的好处。

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