Here’s how engineers plan to save the satellite sent to save NASA’s Swift mission



One week ago, more than 200 miles above the Earth, a refrigerator-size satellite making its way toward an attempted rescue of NASA’s $500 million Swift gamma-ray observatory suddenly spun out of control.

It didn’t look good. The spacecraft, named Link, was rotating on multiple axes, rendering it unable to maintain a reliable communications link with the ground and complicating efforts to arrest the spin. Two of the satellite’s three reaction wheels, used for pointing, also stopped working. Through sporadic radio contact, engineers discovered a problem with some of the spacecraft’s cold gas thrusters used for finer attitude control.

The Link satellite is built, owned, and operated by Katalyst Space Technologies, a satellite servicing startup that won a $30 million contract from NASA to fly up to the Swift observatory, grab onto it, and boost its orbit before succumbing to aerodynamic drag and burning up int he atmosphere.

The clock is ticking. In a few months, Swift will be too low for Katalyst to complete the rescue. This is the first time NASA has contracted with a commercial company to service one of its satellites. The space agency gave Katalyst less than a year to put the mission together. The Link satellite launched July 3 to begin the pursuit of Swift, and the mission proceeded mostly according to plan until last Saturday.

“When this happened, it was during one of the passes without comms,” said Ghonhee Lee, CEO of Katalyst, said in an interview with Ars. “We were, immediately prior, in a very stable configuration.”

Katalyst’s ground team, working from a control center near Denver, hurried to find a fix and recover the Link satellite. The good news was the spacecraft’s other systems remained healthy, including its power supply, three xenon-fueled electric thrusters, and the rendezvous and robotics hardware the Link satellite needs to capture Swift.

Keeping at it

Ars spoke with Lee, Katalyst’s chief executive, on Friday afternoon as the company’s ground team worked to stabilize the spacecraft. The first step involves using the satellite’s plasma engines to gradually slow the spin. The engines are primarily designed for orbit-raising, but they’re also suitable for attitude control because they can vector their thrust with a two-axis gimbal.



Source link

  • Related Posts

    Inside the London hacker house taking a stand against founder burnout

    Six twentysomethings in East London have built what they say is the anti-San Francisco hacker house. The goal is a “holistic improvement in life,” rather than “12 weeks, Demo Day…

    Meta, TikTok, Snap And Google Face Wrongful Death Lawsuit From Four US Families

    The Social Media Victims Law Center accused the companies of creating addictive and dangerous platforms. Tada Images/Shutterstock Another lawsuit is aiming to hold social media platforms accountable for…

    Leave a Reply

    Your email address will not be published. Required fields are marked *

    You Missed

    Police say 13 killed as small plane viewing Nazca Lines in Peru crashes | Aviation News

    Police say 13 killed as small plane viewing Nazca Lines in Peru crashes | Aviation News

    Two people missing after Muskoka boat crash, police say

    Two people missing after Muskoka boat crash, police say

    Permanent No-Fly Zone Established Over Trump Tower, Effective Even After Leaving Office

    Permanent No-Fly Zone Established Over Trump Tower, Effective Even After Leaving Office

    Explosion in Moscow leaves at least 3 dead, 21 injured

    Explosion in Moscow leaves at least 3 dead, 21 injured

    Inside the London hacker house taking a stand against founder burnout

    Inside the London hacker house taking a stand against founder burnout

    Brave chase down Spirit to move up to fourth

    Brave chase down Spirit to move up to fourth