UCF Team Building Mini Satellite to Fly in Space in 2018
October 30, 2017 | UCFEstimated reading time: 3 minutes

A team of UCF researchers and their students is building a small satellite that will conduct experiments as it orbits the Earth next year.
The NASA-funded project code-named Q-PACE will help Physics Professor Joshua Colwell and his team better understand how planets form. The experiments involve marble-sized particles and what happens when they collide at low speeds in space. The project also helps UCF with one of its core missions – teaching students.
“We are always looking for ways to give students practical experience,” Colwell said. “Q-PACE is a unique opportunity because it gives students hands-on experience working with a space instrument as well as learning what it takes to work with a team. And the project isn’t just theoretical. Our experiments will give us valuable data to help us unravel the mystery of how planets formed in our solar system and around other stars. They are contributing to real science.”
Colwell knows real science. He has worked on a number of NASA missions, including the recently concluded Cassini mission that explored Saturn and its rings. His co-investigators – Assistant Professor Adrienne Dove and Florida Space Institute Research Scientist Julie Brisset – also have a lot of experience in the area of microgravity. They also share the desire to teach the next generation of scientists.
Trisha Joseph, an Orlando native, is planning on becoming a mission specialist for NASA after she graduates from UCF. She is majoring in mechanical engineering and was thrilled that Colwell took a chance on her.
“This is a great opportunity to learn hard and soft skills,” Joseph said. “When I started as a sophomore a lot of things were over my head, but working with other students and under Dr. Colwell I’ve learned so much. I received so much guidance and stuff they can’t teach you in school, like the etiquette of working on a professional team. I feel super blessed.”
She said she can’t wait to see the images beamed back from space once the experiments start running.
The cube satellite will perform more than 100 experiments and a high-speed video camera will capture all the action. Then the satellite will transmit the images by radio back to a ground station students are building at UCF. That’s added another layer of complexity to the project, said Doug Maukonen, a co-principal investigator. He is an engineer and research technician working in Colwell’s Center for Microgravity Research.
The students are also using magnets to create a lightweight and efficient attitude control system to keep the satellite oriented in the right direction while running the experiments. There are existing navigation systems the team could have used, Colwell said. But they would have been costly. So instead the team will build one and in the process learn how to troubleshoot by thinking outside the box.
The satellite will orbit the Earth for three to five years. At the end of its mission it will fall into the Earth’s atmosphere, burning up in the process.
Aerospace engineering major Jacob Hambur, of Ft. Myers, said he likes the pressure of a “real project.”
“School is good because it teaches you, but this is so much more because if you mess up here it’s on you,” he said. “You don’t want to be the guy who messes up and now your project is in space and it doesn’t work. The stakes are higher. I like that.”
This is one of two cube satellite projects currently being built at UCF, with Dove leading the SurfSat mission, also slated for launch next year. Maukonen said that one of the benefits of having students work on these projects is the skills they learn, which makes them attractive job candidates.
“I think we have a 100 percent track record,” Maukonen said. “We have our graduates working at places like NASA and JPL.”
Testimonial
"Advertising in PCB007 Magazine has been a great way to showcase our bare board testers to the right audience. The I-Connect007 team makes the process smooth and professional. We’re proud to be featured in such a trusted publication."
Klaus Koziol - atgSuggested Items
Molex Announces Agreement to Acquire Smiths Interconnect
10/17/2025 | MolexMolex, a leading global electronics connectivity innovator, announced that it has signed an agreement to acquire Smiths Interconnect.
American Standard Circuits Achieves Successful AS9100 Recertification
10/14/2025 | American Standard CircuitsAmerican Standard Circuits (ASC), a leading manufacturer of advanced printed circuit boards, proudly announces the successful completion of its AS9100 recertification audit. This milestone reaffirms ASC’s ongoing commitment to the highest levels of quality, reliability, and process control required to serve aerospace, defense, space, and other mission-critical industries.
Kodiak Assembly Solutions Renews ITAR Registration, Providing Secure and Compliant Manufacturing for Defense & Aerospace
09/25/2025 | Kodiak Assembly SolutionsKodiak Assembly Solutions LLLP, a leading electronics contract manufacturer, has successfully renewed its ITAR (International Traffic in Arms Regulations) registration.
Cyient DLM, A Voice from the Frontlines
09/24/2025 | Arpita Das, Global Electronics AssociationOnce seen as a low-cost, build-to-print destination, India’s EMS sector is rapidly emerging as a global hub for high-reliability electronics, particularly in strategic sectors like aerospace, defense, and medical. As such, we highlight some companies that exemplify the strength and potential of Indian manufacturing.
Nortech Systems Achieves Enhanced Fiber Optic Performance
09/16/2025 | Nortech SystemsNortech Systems Incorporated, a leading provider of design and manufacturing solutions for complex electromedical devices and electromechanical systems, announced significant advancements in its fiber optic capabilities.