41 karma · joined January 30, 2024
To optimize charging time, the drone could perhaps analyze the magnetic fields to determine which line has the highest current to optimize charging time. But I would assume some sort of balancing is happening between the lines and phases.
The powerline used is a custom mockup with just 5V AC. But we have also landed on real powerlines. I think there's a video in the channel of the OP video.
You can watch a video demonstration here: https://www.youtube.com/watch?v=C-uekD6VTIQ
If you want to watch some of the mishaps and some of our other work, there's this condensed, slightly cheesy video: https://www.youtube.com/watch?v=L5FFx8VXjGw
And if you happen to be in Rimini for the European Robotics Forum this week you can come by our booth for a chat and have a look at our drone in the flesh.
My research group works on aerial robots and we recently demonstrated sustained autonomous operations by inductively recharging from overhead power lines. A radar-based perception system feeds into an MPC-based trajectory controller which steers the drone towards the target power line. As it approaches, a passive gripping mechanism grasps the cable. Holding force and energy harvesting is achieved by manipulating the current in the split core transformer embedded in the gripper.
For now, the prototype system is only being tested on high-current low-voltage (5V 300A) power lines and the ratio between flight time and charging time is not yet great.
We are working on a pre-print, but in the meantime you can find our previous work here https://portal.findresearcher.sdu.dk/en/persons/esme/publica... and related videos on our YouTube channel.
My research group works on aerial robots and we recently demonstrated sustained autonomous operations by inductively recharging from overhead power lines. A radar-based perception system feeds into an MPC-based trajectory controller which steers the drone towards the target power line. As it approaches, a passive gripping mechanism grasps the cable. Holding force and energy harvesting is achieved by manipulating the current in the split core transformer embedded in the gripper.
For now, the prototype system is only being tested on high-current low-voltage power lines and the ratio between flight time and charging time is not yet great.
We are working on a pre-print, but in the meantime you can find our previous work here https://portal.findresearcher.sdu.dk/en/persons/esme/publica... and related videos on our YouTube channel.
At some point, the protagonist comes in contact with a number of humanoid robots (androids). The theme of the book is very much about the blurry lines of what makes a living thing be alive (is the protagonist's own ultra-controlled life even called living?). So the title could be interpreted as "Do artificial humans have the same aspirations as us?", as in what's the difference between them and us.
Can someone ELI5 why this is seemingly only possible in China?
A large contributor of projected Danish emissions has been low-lying wetlands converted to farmland via draining. Calculations predicted that reflooding these areas could saves millions of tons of emissions, so this became a hot political topic. However, the Danish climate minister recently announced that he had wonderful climate-related news to share; the emissions from these areas were significantly less than first anticipated! And with these magical news, Denmark's 2025 emissions goals have now been met. However, what the minister failed to mention was the fact that the only reason these lands emit less than anticipated is because they have already emitted most of the greenhouse gasses stored in them, just at a much faster rate than initially predicted.