Deep robots, quadruple, light movement number, and more

The video on Friday is your weekly collection of wonderful robots, which have been collected by your friends on IEEE SICTRUM Robots. We also publish a weekly evaluation of the upcoming robots for the next few months. please Send us your events To include.

German Robocup is open: 12-16 March 2025, Nuremberg, Germany
German robotics conference: 13-15 March 2025, Nuremberg, Germany
Robosoft 2025: 23-26 April 2025, Lausanne, Switzerland
IchaExt 2025: 14-17 May 2025, Charlotte, North Carolina
ICRA 2025: 19-23 May 2025, Atlanta
IEEE RCAR 2025: 1-6 June 2025, Toyama, Japan
RSS 2025: 21-25 June 2025, Los Angeles
IAS 2025June 30 – July 4, 2025, Genoa, Italy
ICRES 2025: 3-4 July 2025, Porto, Portugal
IEEE World Haptics: 8-11 July 2025, Suwn, Korea
IFAC seminar on robots: 15-18 July 2025, Paris
Robocup 2025: 15-21 July 2025, Bahia, Brazil

Enjoy videos today!

Will the quadruple wheels be enforced from new crazy ways to move any time soon? It seems perhaps not.

https://www.youtube.com/watch?

[ Deep Robotics ]

A giant eye and small feet make this robot examine the tubes very nice, I think.

https://www.youtube.com/watch?

[ tmsuk ] via [ Robotstart ]

Lightness of movement seems to be one of the few human companies that seriously talks about safety.

https://www.youtube.com/watch?

[ Agility Robotics ]

The computer interface, which was surgically placed in one of the participants in the research with the quadruple of pain, has provided paralysis on all four sides, an unprecedented level of controlling the virtual kadkopter-only by thinking about transporting their unprecedented fingers. In this video, you will only see how the participant in the study dominated the virtual Quadcopter using their brain thought signals to move a virtual manual console.

https://www.youtube.com/watch?

[ University of Michigan ]

Hair styling is an important aspect of personal grooming, and is greatly affected by the appearance of the front hair. While the brush is commonly used to separate hair and for design purposes, existing research focuses mainly on the automatic hair separation systems, with limited exploration in the hairdresser. This research introduces a new automatic system designed to automatically adjust the front haircuts, focusing on planning the path to adjust root strands.

https://www.youtube.com/watch?

[ Paper ]

Thanks, Kento!

If you understand it correctly, if you are careful, it is possible to enter chaos in a blind sorcery robot to switch synchronous sorcery to rotate.

https://www.youtube.com/watch?

[ ETH Zurich ]

Done aircraft with beak? Certainly, why not.

https://www.youtube.com/watch?

[ GRVC ]

Check the amazing experimental preview video that we photographed in our offices here in ologic before CES 2025. OLOGIC built this triaate trial robot to show all kinds of great things that work on the Mediaatek Genio 700 processor. Android is a Create3 base with a dedicated tower (similar to TurtleBot) using pumpkin Genio 700 EVK, as well as Lidar camera and Orbbec Gemini 335 camera. The robot runs the ROS2 NAV and finds colored balls on the ground using the NVIDIA TAO model that works on the Genio 700 and adds it to the map so that the robot can find it. You can direct the robot through Rviz to go to pick up the ball and move it anywhere you want on the map.

https://www.youtube.com/watch?

[ OLogic ]

We explore the capabilities of the large multimedia language models (LLMS) to enable robots to capture independent garbage to identify objects that are trash in complex scenarios dependent on context. By creating evaluation data groups with clarifications for the human agreement, we explain that LLMS excels visually visually with high human consensus, while performance is less in mysterious cases, which reflects human uncertainty. To check the real world application ability, we combine the GPT-4O with an open-minded detector and spread it on a quadruple with a maneuver arm with ROS 2, which indicates that this information can be used to receive independent garbage in practical settings.

https://www.youtube.com/watch?

[ University of Texas at Austin ]

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