Starlink signal can be reverse-engineered to act like GPS—whether SpaceX likes it or not


In a non-peer-reviewed paper, which he posted on his laboratory’s website, Humphries claims he has provided the most complete characterization of Starlink’s signals to date. He says this information is the first step towards developing a new global navigation technology that will operate independently of GPS or its European, Russian and Chinese counterparts.

“The Starlink system signal is a closely guarded secret,” Humphries says. “Even in our early discussions, when SpaceX was getting more cooperative, they didn’t reveal any signal structure to us. We had to basically build a small radio telescope to listen for their signals. Had to start from scratch.

To start the project, UT Austin acquired a Starlink terminal and used it to stream Rafael Nadal’s high-definition tennis videos 24/7 from YouTube. This provided a constant source of Starlink signals that a separate nearby antenna could hear.

Humphries quickly realized that Starlink relies on a technique called orthogonal frequency-division multiplexing (OFDM). OFDM is an efficient method of encoding digital transmissions, originally developed at Bell Labs in the 1960s and now used in Wi-Fi and 5G. “OFDM is all the rage,” says Mark Sciaki, GPS specialist and aerospace professor at Virginia Tech. “It’s a way to pack the most bits per second into a given bandwidth.”


Researchers at UT Austin didn’t try to break Starlink’s encryption or access any user data that came down from the satellites. Instead, they sought synchronization sequences—predictable, repeatable signals beamed by satellites in orbit so that receivers could coordinate with them. Humphries not only found such scenes, but “we were pleasantly surprised to find that they were” [had] There is a dire need for more synchronization sequences than that,” he says.

Each sequence also contains clues to the satellite’s distance and velocity. “The Starlink satellites broadcast about four sequences every millisecond,” says Humphries, “that’s wonderful for their system’s dual use for positioning.”

If the terrestrial receiver has a good idea of ​​the satellites’ movements — which SpaceX shares online to reduce the risk of orbital collisions — it can use the regularity of the sequences to figure out which satellite they came from, And then calculate the distance of that satellite. By repeating this process for multiple satellites, a receiver can find itself within about 30 meters, Humphries says.

Source


Related News

Comment jouer au jeu caché Microsoft Edge sur Android

De plus en plus d'utilisateurs d'Android utilisent Microsoft Edge comme votre navigateur. Ce navigateur basé sur Chromium se présente comme un concurrent sérieux de Google Chrome,

WWDC 2023 d’Apple : date, iOS 17, lunettes de réalité virtuelle et toutes les infos sur le prochain événement Apple

Une année de plus, nous assisterons à la soi-disant Apple Worldwide Developer Conference, acronyme WWDC et qui signifie en espagnol "Conférence mondiale pour

Contrairement aux affirmations de SpaceX, les États-Unis paient tranquillement des millions pour envoyer le terminal Starlink en Ukraine

Bon vendredi! Une note de programmation rapide : La newsletter sera fermée le lundi mais sera de retour dans votre boîte de réception le mardi. ci-dessous : lvaro Bedoya efface un

Hayao Miyazaki considère l’art de l’intelligence artificielle comme une insulte à la vie

Génie de l'animation et créateur de nombreux tubes internationaux à la forge du Studio Ghibli, Hayao Miyazaki considère comme une insulte à la vie l'art et la création

7 problèmes Samsung Galaxy S22 et S22+ et leur solution en 2022

Ce n'est un secret pour personne que les produits phares de Samsung ont tout ce qu'il faut pour offrir une expérience optimale. Cependant, rien n'est parfait, ni dans le