An Optimal Algorithm for the Stacker Crane Problem on Fixed Topologies
October 09, 2024 Β· Declared Dead Β· π International Symposium on Algorithms and Computation
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Authors
Yike Chen, Ke Shi, Chao Xu
arXiv ID
2410.06764
Category
cs.DS: Data Structures & Algorithms
Cross-listed
math.OC
Citations
0
Venue
International Symposium on Algorithms and Computation
Last Checked
5 months ago
Abstract
The Stacker Crane Problem (SCP) is a variant of the Traveling Salesman Problem. In SCP, pairs of pickup and delivery points are designated on a graph, and a crane must visit these points to move objects from each pickup location to its respective delivery point. The goal is to minimize the total distance traveled. SCP is known to be NP-hard, even on trees. The only positive results, in terms of polynomial-time solvability, apply to graphs that are topologically equivalent to a path or a cycle. We propose an algorithm that is optimal for each fixed topology, running in near-linear time. This is achieved by demonstrating that the problem is fixed-parameter tractable (FPT) when parameterized by both the cycle rank and the number of branch vertices.
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