Enhanced detection and identification of satellites using an all-sky multi-frequency survey with prototype SKA-Low stations

Dylan Grigg, Steven Tingay, Steve Prabu, Marcin Sokolowski, Balthasar Indermuehle

Research output: Contribution to journalArticlepeer-review

Abstract

With the low Earth orbit environment becoming increasingly populated with artificial satellites, rockets, and debris, it is important to understand the effects they have on radio astronomy. In this work, we undertake a multi-frequency, multi-epoch survey with two SKA-Low station prototypes located at the SKA-Low site, to identify and characterise radio frequency emission from orbiting objects and consider their impact on radio astronomy observations. We identified 152 unique satellites across multiple passes in low and medium Earth orbits from 1.6 million full-sky images across 13 selected ${\approx}1$ MHz frequency bands in the SKA-Low frequency range, acquired over almost 20 days of data collection. Our algorithms significantly reduce the rate of satellite misidentification, compared to previous work, validated through simulations to be $ \lt 1\%$ . Notably, multiple satellites were detected transmitting unintended electromagnetic radiation, as well as several decommissioned satellites likely transmitting when the Sun illuminates their solar panels. We test alternative methods of processing data, which will be deployed for a larger, more systematic survey at SKA-Low frequencies in the near future. The current work establishes a baseline for monitoring satellite transmissions, which will be repeated in future years to assess their evolving impact on radio astronomy observations.
Original languageEnglish
Article numbere015
Number of pages21
JournalPublications of the Astronomical Society of Australia
Volume42
Early online date26 Dec 2024
DOIs
Publication statusPublished - 2025
Externally publishedYes

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