[postlink]https://radical-technology.blogspot.com/2017/11/robot-david-drilling-and-hammering-into.html[/postlink]http://www.youtube.com/watch?v=JVdufPRK4NIendofvid [starttext]David (formerly Hand Arm System) is an anthropomorphic robot developed at DLR that features variable stiffness actuators (VSA) in all its joints. This demo shows David drilling into a block of concrete with a drill hammer. The built in VSA enhance Davids mechanical robustness against external impacts. This allows him to handle the impacts due to the drill hammering with relative ease. The drilling task shown requires both, precise positioning of the tool center point and vibration damping. [endtext] Bookmark and Share

Robot David Drilling and Hammering into Concrete

[postlink]https://radical-technology.blogspot.com/2017/11/d3-assembly-with-sensitive-compliant.html[/postlink]http://www.youtube.com/watch?v=Qpvr57GYDV4endofvid [starttext]Chapter 1: Introduction (0:00) Chapter 2: Work cell description & configuration (00:29) Chapter 3: Selection of the job (00:50) Chapter 4: Preparation step (01:09) Chapter 5: Riveting (01:44) Chapter 6: Error handling with automatic solution (02:17) Chapter 7: Finalise workflow (02:34) Chapter 8: Statement (03:09) Chapter 9: Outro (03:40) Chapter 10: The Consortium (03:54) [endtext] Bookmark and Share

D3 Assembly with sensitive compliant robot arms

[postlink]https://radical-technology.blogspot.com/2017/11/robex-mond-analog-mission-sizilien-2017.html[/postlink]http://www.youtube.com/watch?v=-wXQf0b1bqQendofvid [starttext]In June and July 2017, the Institute of Robotics and Mechatronics completed Robex tests on the volcano Etna in Sicily as part of the Helmholtz Alliance. This video shows part of the Moon-Analog Mission. As part of the experiment, the rover drives to the lunar lander and uses the robotic arm to release the seismic instrument from the screw connection. Then the seismic instrument is placed in a holding device on the rover and the rover moves to a predetermined point to deposit the seismometer there on the ground. Then the seismometer makes a measurement, is raised again and autonomously driven by the robot to another point of the traverse and dropped off there. [endtext] Bookmark and Share

ROBEX Mond-Analog-Mission Sizilien 2017

[postlink]https://radical-technology.blogspot.com/2017/11/meteron-supvis-justin-first-intelligent.html[/postlink]http://www.youtube.com/watch?v=bfhDS7zSz-0endofvid [starttext]On August 25th 2017, ESA astronaut Paolo Nespoli became the first human to collaborate with an intelligent service robot from space. During the METERON SUPVIS Justin Experiment, DLR humanoid robot Rollin’ Justin was instructed to service a simulated Martian solar farm on Earth. A tablet computer on board the International Space Station let the crew supervise the robot with abstract commands. Rollin’ Justin is capable of a wide variety of tasks, like to connect a data interface probe to the solar panels, inspect the system status, or perform updates. The intuitive user interface inspired Nespoli to train two more NASA Astronauts in flight. Jack Fisher was able to get up to speed with the system in a few minutes. With our scheduled crew time running out, Randy Bresnik still successfully performed an additional maintenance task. This two hour ISS crew session gave us our first insights into how astronauts can collaborate with remote robots as co-workers. The data we collected will serve as the baseline of our continuing endeavor to create better robot assistants for future space exploration. [endtext] Bookmark and Share

METERON SUPVIS Justin: The first intelligent robotic co-worker for astronauts

[postlink]https://radical-technology.blogspot.com/2017/11/rollin-justin-infers-effects-of-wiping.html[/postlink]http://www.youtube.com/watch?v=-jHQSVR8QT0endofvid [starttext]Future service robots are expected to achieve high-quality task performance for everyday household chores. Some of the most frequent tasks in this domain are related to wiping of surfaces, such as vacuuming the floor, sweeping dust, or cleaning windows. However, the performance for these tasks is not directly observable as small dirt particles, dust, and residual water are hardly perceivable by means of computer vision. In this work we propose to utilize haptic perception paired with a qualitative effect representation to reason about the task performance of robotic wiping motions despite poor visual information. In particular, we relate the desired contact force to the measured end-effector force in order to simulate the effect of previously executed wiping motions. This way we are not just able to distinguish good from bad contact situations, but also replan recovery motions w.r.t. the effect-space to accomplish the commanded cleaning task subsequently. We evaluate our approach in a set of experiments with the robot Rollin' Justin. Daniel Leidner and Michael Beetz "Inferring the Effects of Wiping Motions based on Haptic Perception", in Proc. of the International Conference on Humanoid Robots (ICHR), Mexico, November 2016. [endtext] Bookmark and Share

Rollin' Justin infers the Effects of Wiping Motions using Haptic Perception

[postlink]https://radical-technology.blogspot.com/2014/11/keiko-robot-patient-from-gifu-medical.html[/postlink]http://www.youtube.com/watch?v=EK5HtY1O6Boendofvid [starttext]Keiko is a patient robot. Young doctors can learn to diagnose diseases talking to Keiko. Keiko's father is Prof. Yuzo Takahashi, MD, PhD
[endtext] Bookmark and Share

Keiko, a robot patient from Gifu Medical University, Japan!

[postlink]https://radical-technology.blogspot.com/2014/11/japanese-robot-with-touch-motion.html[/postlink]http://www.youtube.com/watch?v=CbecS1Rax74endofvid [starttext]
This video is realy freaky, the robot is feeling, and reacting to the japanese man touching her.[endtext] Bookmark and Share

Japanese robot with touch motion!

[postlink]https://radical-technology.blogspot.com/2014/11/the-humanoid-robot-asuna.html[/postlink]http://www.youtube.com/watch?v=O8hn-fF4v-Mendofvid [starttext]
  • Incredibly life-like robots are currently causing a storm in Japan where they are being prepared for mass commercialisation
  • With new androids creators have beaten 'Uncanny Valley syndrome' where humans are revulsed by robots that look real - but not real enough
  • Now being put to use as receptionists and newsreaders
  • Predicted that within a decade fully independent 'gemanoids' will be in circulation once advances in artificial intelligence are made 
  • Scientists even talking about humans taking androids as partners 
[endtext] Bookmark and Share

The Humanoid Robot Asuna!

[postlink]https://radical-technology.blogspot.com/2014/11/emospark-emotion-processing-unit-epu.html[/postlink]http://www.youtube.com/watch?v=nMRjSijBsLcendofvid [starttext]The human brain processes literally thousands of pieces of information each second, frequently without consciously realizing it. Registering these physically stimuli as simple everyday concepts such as sound, motion and color, the brain’s basic cognitive structure and wiring creates a memory bank of patterns from which impressions are drawn from and predictions about the future made. Similarly, emotional stimuli also gets stored within the memory bank through emotional patterns or “fingerprints.” EmoSpark has developed an Emotional Profile Graph (EPG) which is used to register and develop over time a bank of emotional associations for each memory (data) within each cube. The EPG can communicate the data to other AI technologies, allowing them to virtually “understand” the user and elicit the same emotional response in kind. This response is then accurately conveyed to other AI technologies, allowing for a realistic range of expressions and interaction.
http://emospark.com/ [endtext] Bookmark and Share

Emospark Emotion Processing Unit (E.P.U.) Demonstration!

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