Characterizing Demand Graphs for (Fixed-Parameter) Shallow-Light Steiner Network

Amy Babay, M. Dinitz, Zeyu Zhang
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引用次数: 4

Abstract

We consider the Shallow-Light Steiner Network problem from a fixed-parameter perspective. Given a graph $G$, a distance bound $L$, and $p$ pairs of vertices $(s_1,t_1),\cdots,(s_p,t_p)$, the objective is to find a minimum-cost subgraph $G'$ such that $s_i$ and $t_i$ have distance at most $L$ in $G'$ (for every $i \in [p]$). Our main result is on the fixed-parameter tractability of this problem with parameter $p$. We exactly characterize the demand structures that make the problem "easy", and give FPT algorithms for those cases. In all other cases, we show that the problem is W$[1]$-hard. We also extend our results to handle general edge lengths and costs, precisely characterizing which demands allow for good FPT approximation algorithms and which demands remain W$[1]$-hard even to approximate.
(定参数)浅-轻斯坦纳网络需求图的刻画
我们从固定参数的角度考虑浅-轻斯坦纳网络问题。给定一个图$G$,一个距离限定$L$,和$p$对顶点$(s_1,t_1),\cdots,(s_p,t_p)$,目标是找到一个最小代价子图$G'$,使得$s_i$和$t_i$在$G'$(对于每一个$i \in [p]$)中有最多$L$的距离。我们的主要结果是关于这个带有参数$p$的问题的定参数可跟踪性。我们准确地描述了使问题“容易”的需求结构,并给出了这些情况下的FPT算法。在所有其他情况下,我们表明问题是W$[1]$-hard。我们还扩展了我们的结果来处理一般的边缘长度和成本,精确地描述了哪些需求允许良好的FPT近似算法,哪些需求仍然是W$[1]$-甚至难以近似。
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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