Characterizing the Configuration of Starlink Queuing
Abstract
In all networking systems, queuing is important to ensure appropriate resource utilization in the presence of bursty traffic and varying traffic demands. The Starlink access network is additionally also dynamic in terms of the capacity it can provide, and thus queuing plays an even greater role to ensure appropriate communication performance for the end-users while maintaining high resource utilization. However, for Starlink most system design details, along with the setup of the internal queuing, is private information and not publicly available. To address this we have developed a high-precision, burst-pattern controlled, traffic generation approach allowing us to precisely measure the one-way delay for Starlink. By analyzing the delay and loss in conjunction with a queue simulator we find that Starlink does not employ per-flow fair queuing or drop-tail buffers, but it does use drop-front buffer management. While drop-front reduces delay, it may also interfere with the assumptions made by loss-based congestion controls, potentially contributing to throughput degradation.
Cite
@article{arxiv.2605.27717,
title = {Characterizing the Configuration of Starlink Queuing},
author = {Johan Garcia and Simon Sundberg and Anna Brunstrom},
journal= {arXiv preprint arXiv:2605.27717},
year = {2026}
}
Comments
This is an author-supplied definitive version of a paper accepted at IMC'26 cycle 1 on 2nd Feb 2026. First submitted to IMC'25 in 15th May 2025 and accepted with one-shot-revision on 15th Aug 2025. Please cite with ACM reference format once the ACM DOI is active. 10 pages, 7 figures