In this episode, we talk about the next-gen lunar rover built by Lockheed and GM for NASA’s Artemis mission, how a frustrated tech CEO made a rock-picking robot, and an initiative from University of Manchester to reduce global CO2 emissions by 2% using graphene-enhanced concrete.
In this episode, we talk about the next-gen lunar rover built by Lockheed and GM for NASA’s Artemis mission, how a frustrated tech CEO made a rock-picking robot, and an initiative from University of Manchester to reduce global CO2 emissions by 2% using graphene-enhanced concrete.
Article #5 of our Connected Transport Series. High-speed networking and miniaturization of interconnectivity solutions enable advanced driver-assistance systems (ADAS) and increase vehicle safety.
One of the goals of building the Mars Rover is to demonstrate SPARK. As an early step, Fabien introduced a new hardware abstraction layer (HAL) on top of the existing HALs that had been developed for the various pieces of hardware that make up the Mars Rover.
In this episode, we talk about the next-gen lunar rover built by Lockheed and GM for NASA’s Artemis mission, how a frustrated tech CEO made a rock-picking robot, and an initiative from University of Manchester to reduce global CO2 emissions by 2% using graphene-enhanced concrete.
Article #5 of our Connected Transport Series. High-speed networking and miniaturization of interconnectivity solutions enable advanced driver-assistance systems (ADAS) and increase vehicle safety.
Data is key to building any sport. At Airspeeder, leading cyber protection brand Acronis and their delivery partner Teknov8 help to keep all of the data protected.
With transportation responsible for a significant percentage of global CO2 emissions, simulation technologies can be applied to all aspects of vehicle design to enable rapid innovation for greener vehicles.
Article #4 of our Connected Transport Series. Many technologies, regulations, and infrastructure changes need to be adopted for connected vehicles to realize their full potential.
Article #3 of our Connected Transport Series. Successful connected car designs require secure, well-designed connectors that solve modularity challenges.
Before autonomous race cars take to the track, university teams must qualify in a simulation race around the Indianapolis Motor Speedway, where the winner will be awarded a $100,000 USD prize.
Article #2 of our Connected Transport Series. Sensors activate automatic braking to avoid collisions when objects are too close, and they enable headlights to pan as we turn. But high-speed transfer of data is required to keep the connected advances coming.
In this episode, we talk about MIT’s lobster inspired armor, wireless charging of electric vehicles, and a joint effort between RE2 Robotics and the US Department of Energy Solar Energy Technologies Office to reduce the set up time/cost of solar farms.
A high-speed autonomous vehicle race at the famous Indianapolis Motor Speedway. University teams program and race a modified Dallara AV-21 racecar to win $1.5 million in prize money.
In this episode, we talk about Charm Industrial’s novel approach for carbon offsetting, a concept fitness drone from Hongik University that could be the first to commercialize, and a joint effort between MIT and US Navy to understand how sound waves are altered by water conditions in the North Pole.