Optimal Satellite Maneuvers for Spaceborne Jamming Attacks

Fuente: arXiv
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Main Authors: Fotiadis, Filippos, Rommel, Quentin, Sadler, Brian M., Topcu, Ufuk
Format: Preprint
Published: 2025
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author Fotiadis, Filippos
Rommel, Quentin
Sadler, Brian M.
Topcu, Ufuk
author_facet Fotiadis, Filippos
Rommel, Quentin
Sadler, Brian M.
Topcu, Ufuk
contents Satellites are becoming exceedingly critical for communication, making them prime targets for cyber-physical attacks. We consider a rogue satellite in low Earth orbit that jams the uplink communication between another satellite and a ground station. To achieve maximal interference with minimal fuel consumption, the jammer carefully maneuvers itself relative to the target satellite's antenna. We cast this maneuvering objective as a two-stage optimal control problem, involving i) repositioning to an efficient jamming position before uplink communication commences; and ii) maintaining an efficient jamming position after communication has started. We obtain the optimal maneuvering trajectories for the jammer and perform simulations to show how they enable the disruption of uplink communication with reasonable fuel consumption.
format Preprint
id arxiv_https___arxiv_org_abs_2505_12146
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimal Satellite Maneuvers for Spaceborne Jamming Attacks
Fotiadis, Filippos
Rommel, Quentin
Sadler, Brian M.
Topcu, Ufuk
Systems and Control
Satellites are becoming exceedingly critical for communication, making them prime targets for cyber-physical attacks. We consider a rogue satellite in low Earth orbit that jams the uplink communication between another satellite and a ground station. To achieve maximal interference with minimal fuel consumption, the jammer carefully maneuvers itself relative to the target satellite's antenna. We cast this maneuvering objective as a two-stage optimal control problem, involving i) repositioning to an efficient jamming position before uplink communication commences; and ii) maintaining an efficient jamming position after communication has started. We obtain the optimal maneuvering trajectories for the jammer and perform simulations to show how they enable the disruption of uplink communication with reasonable fuel consumption.
title Optimal Satellite Maneuvers for Spaceborne Jamming Attacks
topic Systems and Control
url https://arxiv.org/abs/2505.12146