设施定位算法的边界方法

P. D. Dowling, R. Love
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引用次数: 14

摘要

单设施和多设施选址问题通常采用迭代计算方法求解。虽然这些过程已被证明是收敛的,但在实践中,希望能够在每次迭代中计算目标函数的下界。这使用户能够停止迭代过程时,目标函数是在一个预先规定的公差的最优值。在本文中,我们推广了一种新的包含lp距离的多设施问题的边界方法。证明了对于欧氏距离问题,新的边界法优于其他两种已知的边界法。给出了三种方法的数值结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bounding methods for facilities location algorithms
Single- and multi-facility location problems are often solved with iterative computational procedures. Although these procedures have proven to converage, in practice it is desirable to be able to compute a lower bound on the objective function at each iteration. This enables the user to stop the iterative process when the objective function is within a prespecified tolerance of the optimum value. In this article we generalize a new bounding method to include multi-facility problems with lp distances. A proof is given that for Euclidean distance problems the new bounding procedure is superior to two other known methods. Numerical results are given for the three methods.
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