Consensus Based Task Allocation for Angles-Only Local Catalog Maintenance of Satellite Systems

Fuente: arXiv
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Main Authors: Perone, Harrison, Hays, Christopher W.
Format: Preprint
Published: 2026
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author Perone, Harrison
Hays, Christopher W.
author_facet Perone, Harrison
Hays, Christopher W.
contents In order for close proximity satellites to safely perform their missions, the relative states of all satellites and pieces of debris must be well understood. This presents a problem for ground based tracking and orbit determination since it may not be practical to achieve the required accuracy. Using space-based sensors allows for more accurate relative state estimates, especially if multiple satellites are allowed to communicate. Of interest to this work is the case where several communicating satellites each need to maintain a local catalog of communicating and non-communicating objects using angles-only limited field of view (FOV) measurements. However, this introduces the problem of efficiently scheduling and coordinating observations among the agents. This paper presents a decentralized task allocation algorithm to address this problem and quantifies its performance in terms of fuel usage and overall catalog uncertainty via numerical simulation. It was found that the new method significantly outperforms the uncertainty-fuel Pareto frontier formed by current approaches.
format Preprint
id arxiv_https___arxiv_org_abs_2602_16678
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Consensus Based Task Allocation for Angles-Only Local Catalog Maintenance of Satellite Systems
Perone, Harrison
Hays, Christopher W.
Multiagent Systems
Systems and Control
J.2
In order for close proximity satellites to safely perform their missions, the relative states of all satellites and pieces of debris must be well understood. This presents a problem for ground based tracking and orbit determination since it may not be practical to achieve the required accuracy. Using space-based sensors allows for more accurate relative state estimates, especially if multiple satellites are allowed to communicate. Of interest to this work is the case where several communicating satellites each need to maintain a local catalog of communicating and non-communicating objects using angles-only limited field of view (FOV) measurements. However, this introduces the problem of efficiently scheduling and coordinating observations among the agents. This paper presents a decentralized task allocation algorithm to address this problem and quantifies its performance in terms of fuel usage and overall catalog uncertainty via numerical simulation. It was found that the new method significantly outperforms the uncertainty-fuel Pareto frontier formed by current approaches.
title Consensus Based Task Allocation for Angles-Only Local Catalog Maintenance of Satellite Systems
topic Multiagent Systems
Systems and Control
J.2
url https://arxiv.org/abs/2602.16678