Statements (85)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:Person
|
gptkbp:affiliation |
gptkb:École_Polytechnique_Fédérale_de_Lausanne
|
gptkbp:awards |
gptkb:IEEE_Robotics_and_Automation_Award
|
gptkbp:collaborations |
gptkb:Hiroshi_Ishiguro
|
gptkbp:contribution |
Development of bipedal robots
|
gptkbp:education |
gptkb:University_of_Twente
|
gptkbp:field |
gptkb:robot
|
https://www.w3.org/2000/01/rdf-schema#label |
Auke Ijspeert
|
gptkbp:influenced_by |
gptkb:physicist
|
gptkbp:nationality |
gptkb:Dutch
|
gptkbp:notable_work |
Robot locomotion
|
gptkbp:occupation |
gptkb:robot
|
gptkbp:project |
Robot perception
Robot simulation Humanoid robots Robot manipulation Robot navigation Assistive robotics Swarm robotics Soft robotics Robot communication Robot design Robot learning Social robots Robotic fish Robot learning algorithms Robot autonomy Robot systems Robot ethics Cheetah robot Neuro-robotics Robot actuators Robot adaptability Robot applications Robot architectures Robot best practices Robot cognitive systems Robot collaboration Robot control systems Robot decision making Robot education Robot efficiency Robot emotional intelligence Robot frameworks Robot functionality Robot future directions Robot guidelines Robot hardware Robot human factors Robot integration Robot intelligence Robot interaction Robot interaction design Robot interfaces Robot maintenance Robot networks Robot outreach Robot perception systems Robot performance Robot planning Robot platforms Robot policy Robot public engagement Robot reasoning Robot regulation Robot robustness Robot safety Robot scalability Robot sensors Robot sensory systems Robot social interaction Robot software Robot standards Robot support Robot testing Robot training Robot usability Robot user experience Robot validation Robot verification Robot versatility |
gptkbp:published_by |
Control of bipedal robots
|
gptkbp:research_focus |
Biomimetic robotics
|
gptkbp:bfsParent |
gptkb:TU_Delft_Alumni
|
gptkbp:bfsLayer |
6
|