First student-developed mission in which satellites orbit and communicate led by UT students

The satellites separated March 22 at 6:35 a.m. Central Standard Time. Now that they're apart, the 60-plus pound, tire-sized satellites will be able to perform the main goals of the project and could pave the way for more complex satellite missions that require real-time coordination between small satellites.

Traditionally, larger and expensive satellites have been commonplace in space missions but the satellites developed by more than 150 aerospace engineering graduate and undergraduate students could demonstrate the potential for space technology that's more affordable and accessible—a forward-looking approach that's attracted the interest of the Air Force and NASA.

The smaller satellites could also help prevent tragedies like the Columbia space shuttle disaster, which, unknown to the shuttle's crew, had a hole in the left wing that caused it to disintegrate upon reentry to the Earth's atmosphere Feb. 1, 2003, killing all seven onboard.

“If they would have had the technology that could go outside the shuttle and inspect it, then the hole could have been discovered,” Lightsey said.

The students, led by their faculty advisor Professor Glenn Lightsey, built the satellites over the course of seven years using a shoestring hardware budget of $250,000 — a small amount compared to the millions typically spent on spacecraft missions.

They were launched into orbit from Alaska's Kodiak Launch Complex in November, a moment that was considered the pinnacle of the students' years of work. But the real moment of truth came early Tuesday morning when they separated, said Lightsey.

“We had to work through some problems on the satellites to get the separation to occur, but the student-team figured out a way to get the command to work. I am very proud of all of them,” said Lightsey. “We have achieved a true first in spacecraft engineering.”

The satellites will collect scientific data and be able to report their location and proximity to each other to students and amateur radio operators tracking their orbit some 400 miles above.

The project is part of the University Nanosat-3 Program started in 2003 and sponsored by the Air Force. In January 2005, The University of Texas at Austin bested 11 other universities and won the program's grant-based competition to launch the FASTRAC satellites into space.

Media Contact

Melissa Mixon EurekAlert!

More Information:

http://www.utexas.edu

All latest news from the category: Information Technology

Here you can find a summary of innovations in the fields of information and data processing and up-to-date developments on IT equipment and hardware.

This area covers topics such as IT services, IT architectures, IT management and telecommunications.

Back to home

Comments (0)

Write a comment

Newest articles

Silicon Carbide Innovation Alliance to drive industrial-scale semiconductor work

Known for its ability to withstand extreme environments and high voltages, silicon carbide (SiC) is a semiconducting material made up of silicon and carbon atoms arranged into crystals that is…

New SPECT/CT technique shows impressive biomarker identification

…offers increased access for prostate cancer patients. A novel SPECT/CT acquisition method can accurately detect radiopharmaceutical biodistribution in a convenient manner for prostate cancer patients, opening the door for more…

How 3D printers can give robots a soft touch

Soft skin coverings and touch sensors have emerged as a promising feature for robots that are both safer and more intuitive for human interaction, but they are expensive and difficult…

Partners & Sponsors