EPFL researchers have built a drone that can walk, hop, and jump into flight with the aid of birdlike legs, greatly expanding the range of potential environments accessible to unmanned aerial...
eVTOL power system architectures are not yet well defined, and with the wide variety of possible configurations, from small, unmanned drones through multiseat passenger craft, there may never be one standard. Read on to learn what this means.
Weight is among the most critical factors behind component choice when it comes to aerospace applications. Being among the bulkiest of components, connectors and cables need to embrace the latest scientific advances in order to reduce weight and enhance performance, fuel efficiency, and overall system reliability. This article outlines the recent advances enabling lighter connectors for aircraft, satellites, and drones.
Dangling from a weather balloon 80,000 feet above New Mexico, a pair of antennas sticks out from a Styrofoam cooler. The antennas are listening for signals...
Professor Animashree (Anima) Anandkumar and her team at The California Institute of Technology (Caltech) have developed a control strategy for unmanned aerial vehicles (UAVs) that uses reinforcement learning to adaptively learn how turbulent wind can change over time and then uses that knowledge to control the UAV based on what it is experiencing.
In nature, flying animals sense coming changes in their surroundings, including the onset of sudden turbulence, and quickly adjust to stay safe. Engineers who design aircraft...
An estimated 100 earthquakes worldwide cause damage each year. This damage includes collapsed buildings, downed electrical lines and more. For first responders, assessing...
See the videos of the month, including one on ETH’s student-built drone, which will operate free of external and visible propellers; one on a soft robotic hand that combines vision, motor-based proprioception, and soft tactile sensors to identify, sort, and pack a stream of unknown objects; one on the Environmental Toolkit for Expeditionary Operations; and one on how integrating AI into robotic systems can enhance their capabilities and enable them to perform more complex tasks.
A team of researchers at Delft University of Technology has developed a drone that flies autonomously using neuromorphic image processing and control based on the workings of animal brains.
U.S. Department of Defense to release thousands of low‐cost autonomous UAVs…manned‐unmanned aircraft swarming and synchronized flying demonstrated for the first time…new counter‐drone...
Have you ever wondered how insects are able to go so far beyond their home and still find their way home? The answer to this question is not only relevant to biology but also to making the...
Neural networks have made a seismic impact on how engineers design controllers for robots, catalyzing more adaptive and efficient machines. Still, these brain-like machine-learning...
A team of researchers at Delft University of Technology has developed a drone that flies autonomously using neuromorphic image processing and control based on the workings of animal brains.
See the videos of the month, including one on NASA’s Europa Clipper spacecraft; one on the Dragonfly rotorcraft and how it was tested multiple times by Johns Hopkins Applied Physics Laboratory in wind tunnel facilities; one on a team from Los Alamos National Laboratory going to the Haughton Impact Crater on Devon Island, Canada — a frigid environment similar to Mars; and one on engineers at the U.S. Naval Research Laboratory’s Naval Center for Space Technology recently completing robotic payload component level testing.
Ronnie Tao, Vice President of Business Development for Amprius Technologies, joins the Aerospace & Defense Technology podcast to discuss the AIBOT battery selection and what to expect in the future development of eVTOL battery technology. He also explains how far most eVTOLs can fly on Amprius and other comparable aircraft batteries today.
Researchers at the Department of Energy’s Oak Ridge National Laboratory are taking cleaner transportation to the skies by creating and evaluating new batteries for airborne electric vehicles that take off and land vertically. Read on to learn more.
Professor Angela Schoellig from the Technical University of Munich uses ChatGPT to develop choreographies for swarms of drones to perform along to music. An additional safety filter prevents mid-air collisions. Read on to learn more.
See the videos of the month, including one on the techniques and current targets for sustainable crosslinked thermoset polymer materials, one on medical materials innovation pioneers, one on making hydrogen the next major fuel source for our warfighters, and one on the Department of Defense exploring options to protect our warfighters further.
RF and microwave technologies are critical in a range of mil/aero applications including electronic warfare, space communications, and counter‐UAS measures. Read about the latest innovations in this...
Both generative design and topology optimization can be leveraged with the COMSOL® software, which also provides features for customizing automated designs so that they are suitable for specific manufacturing methods.
See the new products, including TRIOPTICS’ ATS alignment turning stations, VIAVI Solutions' expanded fiber optic test solutions portfolio, LumeDEL's fiberoptic collimating lenses, Teledyne FLIR's Neutrino LC OGI optical gas imaging camera module, and IDS' Sony sensor.
The detection would start on the ground via internet-connected sensors placed in CalFire-determined areas of danger. For reconnaissance missions, the team is building a rotorcraft equipped with navigation systems, sensors, and cameras.
Development of new Counter UAS technologies is expanding across the global Aerospace and Defense industry. Test your knowledge of counter UAS technology with this quiz.
Innovators at NASA’s Johnson Space Center have designed a circumferential scissor spring mechanism, that when incorporated into a hand controller, improves the restorative force to a control stick’s neutral position. The design also provides for operation on a more linear portion of the spring’s force deflection curve, yielding better feedback to the user.