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Space Force Purchases $25 Million ‘Fuel Truck’ for Satellites

Zipping far above Earth, it’s not exactly easy for satellites to find a corner gas station when the fuel gauge gets low. To tackle this cosmic conundrum, a Space Force-funded initiative is working on an innovative solution to refuel distant…

Zipping far above Earth, it’s not exactly easy for satellites to find a corner gas station when the fuel gauge gets low. To tackle this cosmic conundrum, a Space Force-funded initiative is working on an innovative solution to refuel distant satellites on-the-fly.

WatchAstronomers Could Soon Get Warnings When SpaceX Satellites Threaten Their View CCShare SubtitlesOffEnglishHundreds of military, government, and commercial satellites currently orbit in GEO, about 22,000 miles (36,000 kilometers) above Earth (that’s about one-tenth of the distance to the Moon). This position is AdvertisementRon Lopez, president and managing director of Astroscale U.S., likened the advent of orbital refueling stations to the introduction of in-air refueling capabilities, such such an ability would enhance the range and mobility of satellites. “APS-R opens the door to rethinking the way satellites are designed and operated, marking a significant leap forward in the capabilities and sustainability of satellites in orbit,” Lopez explained in Astroscale’s press release.AdvertisementGraphic showing how the APS-R concept will work.Graphic: AstroscaleIf successful, APS-R has the potential to revolutionize and simplify the in-space refueling process. It will carry and deliver fuel, specifically hydrazine, directly to other spacecraft, allowing them to continue their missions without interruption. Designed to be about the size of a gas pump, APS-R will be able to perform multiple refueling tasks in GEO. In addition to Space Force contributing $25.5 million to the project, Astroscale, and its partners will throw in an additional $12 million. For its construction, Astroscale U.S. has chosen the Southwest Research Institute in San Antonio, Texas, to build the APS-R’s main body, known as the bus.AdvertisementThe Space Systems Command of the U.S. Space Force, responsible for managing a $15 billion acquisition budget, was responsible for issuing this prototype design request, and it did so through the Space Enterprise Consortium, which aims to fast-track the development of in-space capabilities, such as refueling, transportation, servicing, and debris mitigation, to enhance space operations and counter emerging threats.“With APS-R, we are not merely extending the operational life of satellites; we are enhancing our responsiveness, flexibility and overall mission capabilities,” said Space Force colonel Joyce Bulson. “This collaboration signifies a bold step forward in our efforts to secure and strengthen the U.S. Space Force’s position in an ever-evolving space domain, reinforcing our commitment to innovation and ensuring the sustainability of our space assets.” AdvertisementAPS-R isn’t the only venture of its kind, as there are several initiatives and concepts for similar orbital transfer vehicles. Northrop Grumman’s Mission Extension Vehicle (MEV), with two having already launched to space, extends satellite life by taking over propulsion and control functions. DARPA’s Robotic Servicing of Geosynchronous Satellites (RSGS) program aims to develop a robotic servicing vehicle for satellite repair and relocation. But none of these can or will do what APS-R proposes to do: directly refuel satellites in space. That said, SpaceX is developing an The APS-R project is a good example of what the AdvertisementFor more spaceflight in your life, follow us on X (formerly Twitter) and bookmark Gizmodo’s dedicated

Zipping far above Earth, it’s not exactly easy for satellites to find a corner gas station when the fuel gauge gets low.
Anna Fields · Thehackingpost

Based on reporting by gizmodo.com.

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AI transparency. This article was produced with the assistance of artificial intelligence and published under human editorial oversight. AI systems can make mistakes. Read how we use AI (EU AI Act, Art. 50).
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