Weight Constrained Path Finding with Bidirectional A

Saman Ahmadi, Guido Tack, Daniel D. Harabor, P. Kilby
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引用次数: 1

Abstract

Weight constrained path finding, known as a challenging variant of the classic shortest path problem, aims to plan cost optimum paths whose weight/resource usage is limited by a side constraint. Given the bi-criteria nature of the problem (i.e., the presence of cost and weight), solutions to the Weight Constrained Shortest Path Problem (WCSPP) have some properties in common with bi-objective search. This paper leverages the state-of-the-art bi-objective search algorithm BOBA* and presents WC-BA*, an exact A*-based WCSPP method that explores the search space in different objective orderings bidirectionally. We also enrich WC-BA* with two novel heuristic tuning approaches that can significantly reduce the number of node expansions in the exhaustive search of A*. The results of our experiments on a large set of realistic problem instances show that our new algorithm solves all instances and outperforms the state-of-the-art WCSPP algorithms in various scenarios.
双向A的权约束寻径
权值约束寻径是经典最短路径问题的一个具有挑战性的变体,其目的是规划权值/资源使用受侧约束限制的成本最优路径。考虑到问题的双准则性质(即成本和权重的存在),权重约束最短路径问题(WCSPP)的解与双目标搜索具有一些共同的性质。本文利用最先进的双目标搜索算法BOBA*,提出了一种精确的基于A*的WCSPP方法WC-BA*,该方法可以在不同目标顺序下双向探索搜索空间。我们还用两种新颖的启发式调优方法丰富了WC-BA*,这两种方法可以显著减少A*的穷举搜索中的节点展开次数。我们在大量实际问题实例上的实验结果表明,我们的新算法解决了所有实例,并且在各种场景下优于最先进的WCSPP算法。
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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