High above the Earth, a new generation of robots designed to keep satellites working longer is replacing its predecessor — quite literally.
This week, a spacecraft built and operated by Northrop Grumman called a Mission Extension Vehicle (MEV) unplugged from a communications satellite operated by the Australian firm Optus. For more than a year, the MEV spacecraft has been stuck to the back of the Optus satellite, keeping it in the right place in space so it can continue its mission.
Now, the satellite life-extension spacecraft is leaving to make room for its replacement. In July, four new Northrop spacecraft launched into orbit on a SpaceX Falcon 9 rocket. One is called the Mission Robotic Vehicle, a powerful satellite equipped with two advanced robotic arms that was developed by DARPA, the U.S. military research organization. The other three are called Mission Extension Pods, or MEPs, smaller, simpler satellites that are essentially modular propulsion systems.
Those four spacecraft are currently headed for targets around 27,000 miles above the Earth. In 2027, the MRV will use its robotic arms to attach one of the MEP pods to the Optus satellite, which should keep it in orbit for years to come.
The satellites that provide communications or scan the planet with various sensors only last for so long. They typically fail when they run out of fuel to stay in the right place, not because their computers and transceivers stop working. The Optus satellite was launched in 2009, and designed for a 15-year lifespan. If all goes well with the MEV, the satellite could fly — and generate revenue — for another six years.
Now, cheaper launch costs and lower-cost space components are making spacecraft repair missions a reality.
The goal is “a paradigm shift where we can see space as sustainable, with a more resilient architecture and infrastructure base where we can do things like spacecraft repairs, life extension, or even upgrades and maintenance of satellites,” according to Northrop’s director of logistics and servicing Cassie Wong.
There are two MEVs in orbit right now, launched in 2019 and 2020, which have provided 10 years of life extension to three customers, including two different Intelsat spacecraft and the Optus satellite. MEV-1 will wait in a parking orbit for another customer, while MEV-2 is currently attached to its Intelsat customer until 2030.
The Mission Robotic Vehicle, or MRV, represents an evolution of the business model. Satellite operators buy and own the MEPs, which are permanently attached to their spacecraft. That frees up the MRV to service more vehicles, creating a cheaper offering.
The offering requires some serious technology chops. The vehicles need to autonomously approach one another and dock safely, not a simple task when both are moving at velocities of thousands of miles an hour. The MEVs use a docking probe to plug in and hang onto satellite thruster nozzles. Meanwhile, the MRVs will need to carefully attach the MEPs using their robotic arms.
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