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首页> 外文期刊>American journal of operations research >Facility Location Decisions Based on Driving Distances on Spherical Surface
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Facility Location Decisions Based on Driving Distances on Spherical Surface

机译:基于球面行驶距离的设施选址决策

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摘要

Facility location problems are concerned with the location of one or more facilities in a way that optimizes a certain objective such as minimizing transportation cost, providing equitable service to customers, capturing the largest market share, etc. Many facility location decisions involving distance objective functions on Spherical Surface have been approached using algorithmic, meta-heuristic algorithms, branch-and-bound algorithm, approximation algorithms, simulation, heuristic techniques, and decomposition method. These approaches are most based on Euclidean distance or Great circle distance functions. However, if the location points are widely separated, the difference between driving distance, Euclidean distance and Great circle distance may be significant and this may lead to significant variations in the locations of the corresponding optimal source points. This paper presents a framework and algorithm to use driving distances on spherical surface and explores its use as a facility location decision tool and helps companies assess the optimal locations of facilities.
机译:设施选址问题与一个或多个设施的选址有关,可以优化某个目标,例如最小化运输成本,为客户提供公平的服务,占领最大的市场份额等。许多涉及距离目标功能的设施选址决策使用算法,元启发式算法,分支定界算法,逼近算法,模拟,启发式技术和分解方法来接近球面。这些方法大部分基于欧几里得距离或大圆距函数。但是,如果位置点相隔较远,则行驶距离,欧几里得距离和大圆周距离之间的差异可能会很大,并且这可能导致相应最佳源点的位置发生重大变化。本文提出了一种在球面上使用行驶距离的框架和算法,并探讨了其作为设施位置决策工具的用途,并帮助公司评估设施的最佳位置。

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