Weighted k-Server Admits an Exponentially Competitive Algorithm
Adithya Bijoy, Ankit Mondal, Ashish Chiplunkar
摘要
The weighted -server is a variant of the -server problem, where the cost of moving a server is the server’s weight times the distance through which it moves. The problem is famous for its intriguing properties and for evading standard techniques for designing and analyzing online algorithms. Even on uniform metric spaces with sufficiently many points, the deterministic competitive ratio of weighted -server is known to increase doubly exponentially with respect to , while the behavior of its randomized competitive ratio is not fully understood. Specifically, no upper bound better than doubly exponential is known, while the best known lower bound is singly exponential in . In this paper, we close the exponential gap between these bounds by giving an -competitive randomized online algorithm for the weighted -server problem on uniform metrics, thus breaking the doubly exponential barrier for deterministic algorithms for the first time. This is achieved by a recursively defined notion of a phase which, on the one hand, forces a lower bound on the cost of any offline solution, while, on the other hand, also admits a randomized online algorithm with bounded expected cost. The algorithm is also recursive; it involves running several algorithms virtually and in parallel and following the decisions of one of them in a random order. We also show that our techniques can be lifted to construct an -competitive randomized online algorithm for the generalized -server problem on weighted uniform metrics.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper1
问问它们各自怎么用它它引用的顶会 Paper1
相关 Paper
- Unbounded lower bound for k-server against weak adversariesMarcin Bienkowski, Jaroslaw Byrka, Christian Coester, Lukasz JezSTOC 2020
- Poly-logarithmic Competitiveness for the k-Taxi ProblemAnupam Gupta, Amit Kumar, Debmalya PanigrahiSODA 2024 · 被引用 1 次
- Tight Bounds for Online Graph PartitioningMonika Henzinger, Stefan Neumann, Harald Räcke, Stefan SchmidSODA 2021 · 被引用 12 次
- A Hitting Set Relaxation for -Server and an Extension to Time-WindowsAnupam Gupta, Amit Kumar, Debmalya PanigrahiFOCS 2021 · 被引用 4 次
- Improved and Deterministic Online Service with Deadlines or DelayNoam TouitouSTOC 2023 · 被引用 4 次
