A Multifaceted Look at Starlink Performance

Fuente: arXiv
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Main Authors: Mohan, Nitinder, Ferguson, Andrew, Cech, Hendrik, Renatin, Prakita Rayyan, Bose, Rohan, Marina, Mahesh, Ott, Jörg
Format: Preprint
Published: 2023
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author Mohan, Nitinder
Ferguson, Andrew
Cech, Hendrik
Renatin, Prakita Rayyan
Bose, Rohan
Marina, Mahesh
Ott, Jörg
author_facet Mohan, Nitinder
Ferguson, Andrew
Cech, Hendrik
Renatin, Prakita Rayyan
Bose, Rohan
Marina, Mahesh
Ott, Jörg
contents In recent years, Low-Earth Orbit (LEO) mega-constellations have emerged as a promising network technology and have ushered in a new era for democratizing Internet access. The Starlink network from SpaceX stands out as the only consumer-facing LEO network with over 2M+ customers and more than 4000 operational satellites. In this paper, we conduct the first-of-its-kind extensive multi-faceted analysis of Starlink network performance leveraging several measurement sources. First, based on 19.2M crowdsourced M-Lab speed test measurements from 34 countries since 2021, we analyze Starlink global performance relative to terrestrial cellular networks. Second, we examine Starlink's ability to support real-time web-based latency and bandwidth-critical applications by analyzing the performance of (i) Zoom video conferencing, and (ii) Luna cloud gaming, comparing it to 5G and terrestrial fiber. Third, we orchestrate targeted measurements from Starlink-enabled RIPE Atlas probes to shed light on the last-mile Starlink access and other factors affecting its performance globally. Finally, we conduct controlled experiments from Starlink dishes in two countries and analyze the impact of globally synchronized "15-second reconfiguration intervals" of the links that cause substantial latency and throughput variations. Our unique analysis provides revealing insights on global Starlink functionality and paints the most comprehensive picture of the LEO network's operation to date.
format Preprint
id arxiv_https___arxiv_org_abs_2310_09242
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A Multifaceted Look at Starlink Performance
Mohan, Nitinder
Ferguson, Andrew
Cech, Hendrik
Renatin, Prakita Rayyan
Bose, Rohan
Marina, Mahesh
Ott, Jörg
Networking and Internet Architecture
In recent years, Low-Earth Orbit (LEO) mega-constellations have emerged as a promising network technology and have ushered in a new era for democratizing Internet access. The Starlink network from SpaceX stands out as the only consumer-facing LEO network with over 2M+ customers and more than 4000 operational satellites. In this paper, we conduct the first-of-its-kind extensive multi-faceted analysis of Starlink network performance leveraging several measurement sources. First, based on 19.2M crowdsourced M-Lab speed test measurements from 34 countries since 2021, we analyze Starlink global performance relative to terrestrial cellular networks. Second, we examine Starlink's ability to support real-time web-based latency and bandwidth-critical applications by analyzing the performance of (i) Zoom video conferencing, and (ii) Luna cloud gaming, comparing it to 5G and terrestrial fiber. Third, we orchestrate targeted measurements from Starlink-enabled RIPE Atlas probes to shed light on the last-mile Starlink access and other factors affecting its performance globally. Finally, we conduct controlled experiments from Starlink dishes in two countries and analyze the impact of globally synchronized "15-second reconfiguration intervals" of the links that cause substantial latency and throughput variations. Our unique analysis provides revealing insights on global Starlink functionality and paints the most comprehensive picture of the LEO network's operation to date.
title A Multifaceted Look at Starlink Performance
topic Networking and Internet Architecture
url https://arxiv.org/abs/2310.09242