JOURNAL ARTICLE

Near-Optimal Packet Scheduling in Multihop Networks with End-to-End Deadline Constraints

Christos TsanikidisJavad Ghaderi

Year: 2023 Journal:   Proceedings of the ACM on Measurement and Analysis of Computing Systems Vol: 7 (3)Pages: 1-32   Publisher: Association for Computing Machinery

Abstract

Scheduling packets with end-to-end deadline constraints in multihop networks is an important problem that has been notoriously difficult to tackle. Recently, there has been progress on this problem in the worst-case traffic setting, with the objective of maximizing the number of packets delivered within their deadlines. Specifically, the proposed algorithms were shown to achieve Ω(1/log(L)) fraction of the optimal objective value if the minimum link capacity in the network is Cmin =Ω(log (L)), where L is the maximum length of a packet's route in the network (which is bounded by the packet's maximum deadline). However, such guarantees can be quite pessimistic due to the strict worst-case traffic assumption and may not accurately reflect real-world settings. In this work, we aim to address this limitation by exploring whether it is possible to design algorithms that achieve a constant fraction of the optimal value while relaxing the worst-case traffic assumption. We provide a positive answer by demonstrating that in stochastic traffic settings, such as i.i.d. packet arrivals, near-optimal, (1-ε)-approximation algorithms can be designed if Cmin = Ω(log (L/ε)/ε2). To the best of our knowledge, this is the first result that shows this problem can be solved near-optimally under nontrivial assumptions on traffic and link capacity. We further present extended simulations using real network traces with non-stationary traffic, which demonstrate that our algorithms outperform worst-case-based algorithms in practical settings.

Keywords:
Network packet Computer science Bounded function Scheduling (production processes) Fraction (chemistry) Cmin Computer network Mathematical optimization Distributed computing Mathematics

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5
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0.83
FWCI (Field Weighted Citation Impact)
36
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0.71
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Citation History

Topics

Advanced Wireless Network Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Mobile Ad Hoc Networks
Physical Sciences →  Computer Science →  Computer Networks and Communications
Interconnection Networks and Systems
Physical Sciences →  Computer Science →  Computer Networks and Communications
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