Resilience of Mega-Satellite Constellations: How Node Failures Impact Inter-Satellite Networking Over Time?

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Guo, Binquan, Xiong, Zehui, Zhang, Zhou, Li, Baosheng, Niyato, Dusit, Yuen, Chau, Han, Zhu
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908524908380160
author Guo, Binquan
Xiong, Zehui
Zhang, Zhou
Li, Baosheng
Niyato, Dusit
Yuen, Chau
Han, Zhu
author_facet Guo, Binquan
Xiong, Zehui
Zhang, Zhou
Li, Baosheng
Niyato, Dusit
Yuen, Chau
Han, Zhu
contents Mega-satellite constellations have the potential to leverage inter-satellite links to deliver low-latency end-to-end communication services globally, thereby extending connectivity to underserved regions. However, harsh space environments make satellites vulnerable to failures, leading to node removals that disrupt inter-satellite networking. With the high risk of satellite node failures, understanding their impact on end-to-end services is essential. This study investigates the importance of individual nodes on inter-satellite networking and the resilience of mega satellite constellations against node failures. We represent the mega-satellite constellation as discrete temporal graphs and model node failure events accordingly. To quantify node importance for targeted services over time, we propose a service-aware temporal betweenness metric. Leveraging this metric, we develop an analytical framework to identify critical nodes and assess the impact of node failures. The framework takes node failure events as input and efficiently evaluates their impacts across current and subsequent time windows. Simulations on the Starlink constellation setting reveal that satellite networks inherently exhibit resilience to node failures, as their dynamic topology partially restore connectivity and mitigate the long-term impact. Furthermore, we find that the integration of rerouting mechanisms is crucial for unleashing the full resilience potential to ensure rapid recovery of inter-satellite networking.
format Preprint
id arxiv_https___arxiv_org_abs_2509_06766
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Resilience of Mega-Satellite Constellations: How Node Failures Impact Inter-Satellite Networking Over Time?
Guo, Binquan
Xiong, Zehui
Zhang, Zhou
Li, Baosheng
Niyato, Dusit
Yuen, Chau
Han, Zhu
Networking and Internet Architecture
Mega-satellite constellations have the potential to leverage inter-satellite links to deliver low-latency end-to-end communication services globally, thereby extending connectivity to underserved regions. However, harsh space environments make satellites vulnerable to failures, leading to node removals that disrupt inter-satellite networking. With the high risk of satellite node failures, understanding their impact on end-to-end services is essential. This study investigates the importance of individual nodes on inter-satellite networking and the resilience of mega satellite constellations against node failures. We represent the mega-satellite constellation as discrete temporal graphs and model node failure events accordingly. To quantify node importance for targeted services over time, we propose a service-aware temporal betweenness metric. Leveraging this metric, we develop an analytical framework to identify critical nodes and assess the impact of node failures. The framework takes node failure events as input and efficiently evaluates their impacts across current and subsequent time windows. Simulations on the Starlink constellation setting reveal that satellite networks inherently exhibit resilience to node failures, as their dynamic topology partially restore connectivity and mitigate the long-term impact. Furthermore, we find that the integration of rerouting mechanisms is crucial for unleashing the full resilience potential to ensure rapid recovery of inter-satellite networking.
title Resilience of Mega-Satellite Constellations: How Node Failures Impact Inter-Satellite Networking Over Time?
topic Networking and Internet Architecture
url https://arxiv.org/abs/2509.06766