Adaptive Swap Algorithm for Pareto Front Approximation

J. Janáček, Marek Kvet
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引用次数: 3

Abstract

Implementation of any public service system is matter of negotiation of the system founder and public representatives, who try to apply conflicting criteria to the final system design. Pareto front or its approximation can be a very useful tool for the negotiation, as the set of solutions represents the set of such designs, which cannot be improved in one of the criteria unless some of the others get worsened. Nevertheless, constitution of the exact Pareto front represents serious computational problem, with big expected consumption of computational time. This drawback evoked the idea to use a heuristic for constituting a good approximation of the Pareto front of the public service system designs. In this paper, a swap algorithm is used as the base searching method due to its excellent efficiency, when applied to p-location problems with one objective function. The algorithm was adjusted for bi-criteria p-location problems so that its local objective function was formulated as a convex combination of the conflicting criteria and, furthermore, a run of the algorithm was limited by a maximal permitted computational time. This parameterized algorithm was embedded into an adaptive process, which randomly sets the parameters and a starting solution to active values based on results of previous algorithm runs. The adaptive algorithm was tested on real-sized benchmarks derived from existing emergency medical systems and the obtained results were compared to the exact Pareto fronts.
Pareto前逼近的自适应交换算法
任何公共服务制度的实施都是制度创始人和公众代表协商的问题,他们试图将相互冲突的标准应用于最终的制度设计。帕累托前沿或其近似值对于协商来说是一个非常有用的工具,因为解决方案集代表了这样的设计集,除非其他一些标准恶化,否则在其中一个标准中无法改进。然而,精确帕累托前沿的构造是一个严重的计算问题,计算时间的预期消耗很大。这一缺陷引发了使用启发式来构建公共服务系统设计的帕累托前沿的良好近似的想法。本文在求解单目标函数的p-定位问题时,采用交换算法作为基础搜索方法,因为它具有很好的效率。该算法对双准则p定位问题进行了调整,使其局部目标函数被表述为冲突准则的凸组合,此外,该算法的运行受到最大允许计算时间的限制。该参数化算法嵌入到一个自适应过程中,该过程根据先前算法运行的结果随机设置参数和起始解为活动值。在现有紧急医疗系统的实际基准上对自适应算法进行了测试,并将得到的结果与精确的帕累托前沿进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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