Like many engineers, Sarah Downs says she knew she needed to pursue a STEM profession from a younger age. As a teen, she found robotics via her Tulsa, Okla., center faculty’s First Lego League group, and he or she fell in love with the sphere, she says. Downs participated within the worldwide robotics program from 2014 to 2016.
Watching PBS specials on NASA Mars rovers Spirit and Alternative, and seeing the reside broadcast of the Curiosity rover launch in 2011, impressed the teenager to dream of a profession working with NASA.
Sarah Downs
MEMBER GRADE
Graduate pupil member
UNIVERSITY
Texas A&M College in School Station
MAJOR
Electrical engineering
This yr the IEEE graduate pupil member achieved that dream. For her ultimate mission as a grasp’s diploma candidate in electrical engineering on the College of Tulsa, she labored on an algorithm in collaboration with NASA and the U.S. Air Pressure.
The algorithm she developed permits a robotic assembling satellites in house to insert an antenna into the proper spot, addressing robotics’s traditional peg-in-hole drawback of inserting an object into its corresponding gap.
Now a Ph.D. pupil in electrical engineering at Texas A&M College in School Station, Downs is continuous her analysis on satellite tv for pc meeting and manipulation “however on a a lot bigger scale,” she says.
Following a childhood ardour
Downs grew up within the Tulsa space. Her father, who died from a coronary heart assault in 2015 when she was 13, was a security advisor within the oil and fuel trade. Her mom stayed residence to maintain her brother, who has autism. After her father died, her mom went again to school to earn a bachelor’s diploma in enterprise so she might help the household.
“We didn’t have a lot revenue, and my mother was at all times apprehensive about cash,” Downs says. “That made me extra conscious of getting a profitable profession, in a financial sense.”
From then on, every time she thought of her future profession, having a good wage to help the household was excessive on her listing.
By pursuing a profession in robotics, she says, she will be able to comply with her ardour whereas acquiring monetary safety.
In highschool, Downs joined the First robotics membership, the place she discovered herself drawn to {the electrical} parts used within the machines she and her classmates constructed.
Throughout her ultimate two years of highschool, she participated in an extension program at Tulsa Tech, a coaching faculty. She spent half her day in highschool courses and the opposite half taking engineering programs on the vocational faculty.
After graduating in 2020, she accepted scholarships to attend the College of Tulsa. She started her freshman yr at UTulsa not figuring out whether or not she needed to main in electrical or mechanical engineering, she says, including that her love of working with small techniques helped her select EE.
For her senior yr capstone mission, she and two of her classmates designed a lunar lander exhibit for the Tulsa Air and Area Museum. They created an interactive sport that simulates missions on lunar and martian surfaces. 4 celestial our bodies—the moon, Venus, Mars, and Titan—are listed throughout three pc displays. Utilizing a sport controller, museum guests can discover the digital floor of every one. The exhibit remains to be on show.
Downs earned her bachelor’s diploma in electrical engineering in 2024 and continued her training on the college’s EE grasp’s diploma program.
Each extra and simpler than individuals assume
When Downs started her graduate research, she was presupposed to be a part of a NASA robotics mission for 2 years. However when a delay in authorities funding postponed the mission’s begin, she as a substitute spent her first yr within the faculty’s Institute for Robotics and Autonomy, then newly launched. Its foremost focus is creating robots to help individuals who have mobility challenges.
Impressed by her grandmother, who was wheelchair-bound because of extreme arthritis, Downs developed a robotic arm that helps older individuals and wheelchair customers reside independently. The arm was capable of establish and place objects within the applicable places inside the house, corresponding to unloading sure groceries from a buying bag and putting them on a shelf or in separate containers.
Earlier than the beginning of her sophomore yr in 2025, the NASA mission lastly secured authorities funding. She developed a robotic that achieves the peg-in-hole process with out utilizing any imaginative and prescient techniques. Usually, cameras assist information robots’ satellite-assembly work. However within the harsh, distant setting of outer house, cameras may malfunction or encounter delays.
“Don’t cease asking questions. Particularly in engineering, don’t fake like you understand the whole lot, as a result of science is about continually desirous to study and pay attention.”
Moderately than utilizing cameras, Downs’s robotic arm deploys a force-based insertion course of to sense place and orientation of objects within the arm’s setting. The robotic loosely grips an antenna and, with a torque sensor on its gripper, “feels” the pressure suggestions of the place the satellite tv for pc and antenna are in relation to one another. The robotic then guides the antenna meeting right into a goal opening on its satellite tv for pc and maintains the place throughout adhesion.
Including to the complexity, the robotic performs its process in zero gravity.
“With out gravity, you now have to contemplate the arm’s response torques on the satellite tv for pc to keep away from flinging it into house,” Downs says. Any movement from the arm throughout the insertion course of, particularly from elevated forces, might trigger the satellite tv for pc to proceed motion in that path.
To fight that, Downs is performing calculations for the mission to direct focused reverse thrusts and counter the pressure of the robotic’s motions.
Her graduate mission captures the easy but complicated nature of robotics that she finds fascinating, she says.
“I feel robots are each extra and in addition simpler than individuals assume,” she says. “Actually, all it’s worthwhile to begin programming a robotic is its Denavit-Hartenberg parameters, and you are able to do quite a bit with that,” she says, referencing the 4 values used to explain the place and orientation of a robotic arm and manipulators. Even with completely different grippers and levels of freedom, “basically, all robotic manipulators begin there,” she says.
“However,” she provides, “we’re nonetheless studying a lot about how robots work together with their setting. Even one thing easy to us, like manipulating a pen, remains to be extremely complicated for robots.”
Downs is finishing her doctoral thesis within the Robotic Area Simulator mission at Texas A&M’s Robotics and Automation Design (RAD) Lab, which focuses on creating machines that may survive in excessive environments. It collaborates with NASA.
Her thesis advisor is Robert Ambrose, a NASA veteran who launched the RAD Lab in 2022. The IEEE member is about to function affiliate director of the varsity’s Area Institute, because of open this yr in Houston. The analysis facility is being constructed subsequent to the Johnson Area Heart.
After incomes her Ph.D., Downs says, she hopes to sooner or later work for NASA, creating rovers that accumulate samples from Mars or robotic arms that carry out duties on house stations.
To study extra about robots, try IEEE Spectrum’s information.
Getting out of the engineering bubble
Downs joined IEEE in 2020 as a freshman at UTulsa to get extra concerned in electrical engineering occasions on campus. On the time, the COVID-19 pandemic saved golf equipment and organizations from assembly in individual.
She was energetic in her faculty’s IEEE pupil department and was elected as its 2022–2024 president. Beneath her management, the department went from having just a few occasions to internet hosting one each two weeks.
They included lunch-and-learn classes and dinners that related college students with skilled engineers and the college’s alumni. Downs additionally organized hands-on workshops on soldering, 3D printing, CAD modeling, and résumé-building.
Her efforts helped improve the department’s government board membership from roughly 5 college students to 25 in 2023. The identical yr, her soldering workshop attracted about 80 college students.
She says she loved working with IEEE, particularly “participating with alumni and studying from engineers.”
IEEE is a superb useful resource for networking alternatives, she says, noting that “throughout the COVID-19 pandemic, engineering college students stayed of their bubbles.” IEEE occasions helped the scholars make connections that might serve them properly, she says.
“Networking is essential, particularly in at the moment’s powerful job market,” she says. “It’s quite a bit about who you understand and the way individuals observe your work ethic.”
Downs, who now serves as an IEEE graduate advisor for UTulsa’s pupil department, says she has seen firsthand how the varsity’s pupil department community has benefited its pupil members.
“A number of them have discovered jobs” due to IEEE, she says.
From Your Website Articles
Associated Articles Across the Net
