The most advanced robotic servicing satellite–that we know about

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This is the world's most advanced robotic servicing satellite—that we know about - Ars Technica

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A spacecraft fitted with two flexible robotic arms is on the way to geosynchronous orbit after launching earlier this week on a SpaceX Falcon 9 rocket, kicking off a planned decade-long mission to open new frontiers in satellite servicing.

The Mission Robotic Vehicle, owned and built by Northrop Grumman, rocketed into orbit from Cape Canaveral Space Force Station in Florida on Tuesday. Three small propulsion pods, each functioning as standalone spacecraft, accompanied the MRV aboard the Falcon 9 rocket.

The Falcon 9 deployed all four payloads within about an hour of liftoff. It will take about a year for the satellites to maneuver from their initial elliptical drop-off orbit into a circular orbit more than 22,000 miles (nearly 36,000 kilometers) over the equator. At this altitude, the MRV and the three Mission Extension Pods (MEPs) will travel in lockstep with Earth’s rotation, operating in the same kind of orbit as numerous civilian and military communications satellites, missile warning platforms, and a growing number of spy satellites.

That’s when the real fun will begin.

Path to the pad

The Mission Robotic Vehicle is arguably the most advanced servicing satellite ever launched. It’s certainly the most sophisticated orbiting servicer we know anything about. China launched a satellite with a robotic arm into geosynchronous orbit in 2016. Another launch in 2021 deployed the Shijian-21 or SJ-21, spacecraft on a “space debris mitigation” mission. SJ-21 linked up with a defunct Chinese navigation satellite and moved it to a higher altitude for disposal before returning to the geosynchronous belt.

China launched the SJ-25 refueling mission in January 2025, and it docked with SJ-21 a few months later before the satellites went their separate ways, completing what was apparently the first refueling demonstration so far from Earth. The extra gas is expected to give SJ-21 a longer life, giving it the potential to visit and reposition other satellites in geosynchronous orbit.

Northrop Grumman and its subsidiary, SpaceLogistics, have the same idea with the Mission Robotic Vehicle. There are clear military applications for this capability. Last year, the head of US Space Command, Gen. Stephen Whiting, told Congress that China was developing “on-orbit, maneuverable counterspace satellites to target our satellites using dual-use technologies.” He explicitly called out SJ-21 as an example of a mission that China could use “for potential offensive purposes against satellites we rely on to defend the homeland and project power.”

The US Space Force already has a fleet of inspector satellites roaming geosynchronous orbit to observe and report on the activities of foreign spacecraft. US military operators maneuvered one of these inspector satellites near the SJ-21 and SJ-25 satellites during the refueling operation last year.

But military officials hadn’t publicly acknowledged any US-owned satellite with capabilities similar to China’s trio of Shijian satellites. That changes with Northrop Grumman’s MRV mission. The Pentagon’s Defense Advanced Research Projects Agency (DARPA) spent approximately $420 million to develop the satellite’s robotics payload, alongside hundreds of millions of dollars invested by Northrop Grumman.

The public-private partnership brought Northrop Grumman’s preexisting commercial satellite servicing program together with DARPA’s Robotic Servicing of Geosynchronous Satellites (RSGS) program. These programs originally operated independently.

Northrop Grumman’s Mission Robotic Vehicle, with the RSGS payload on top, sits in the upper position on the payload stack awaiting launch on SpaceX’s Falcon 9 rocket. Three Mission Extension Pods are arranged around the cylinder at the bottom of the image.

Credit:<br>SpaceX

Northrop Grumman’s Mission Robotic Vehicle, with the RSGS payload on top, sits in the upper position on the payload stack awaiting launch on SpaceX’s Falcon 9 rocket. Three Mission Extension Pods are arranged around the cylinder at the bottom of the image.

Credit:

SpaceX

Northrop Grumman developed two satellites called Mission Extension Vehicles and launched them in 2019 and 2020. The MEVs docked with aging commercial communications satellites in geosynchronous orbit to take over pointing and orbit control. The MRV builds on the MEV concept, but thanks to the DARPA-funded robotic arms, the new servicer doesn’t have to commit itself to a single client....

satellites mission robotic orbit satellite northrop

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