Valkyrie program

GPTKB entity

Statements (61)
Predicate Object
gptkbp:instanceOf program
gptkbp:aimsTo emergency responders
robot autonomy
develop humanoid robots
gptkbp:collaboratesWith various universities
gptkbp:designedFor human-robot interaction
gptkbp:developedBy NASA
gptkbp:features advanced robotics
gptkbp:focusesOn disaster response
gptkbp:hasCollaboratedWith gptkb:MIT
industry partners
robotics startups
gptkbp:hasInternationalClassification dexterous manipulation
gptkbp:hasParticipatedIn military applications
robotics competitions
gptkbp:hasRelatedPatent search and rescue
https://www.w3.org/2000/01/rdf-schema#label Valkyrie program
gptkbp:includes gptkb:robot_Valkyrie
gptkbp:isBasedOn previous robotics research
gptkbp:isDesignedFor safety features
human capabilities
navigate complex environments
gptkbp:isEquippedWith sensors
gptkbp:isEvaluatedBy performance metrics
efficiency
peer reviews
gptkbp:isExpectedTo human operators
gptkbp:isFacilitatedBy collaborative tasks
gptkbp:isFocusedOn robotic perception
robotic mobility
gptkbp:isInfluencedBy human biomechanics
gptkbp:isInvolvedIn international collaborations
public demonstrations
gptkbp:isKnownFor its humanoid design
gptkbp:isPartOf robotics research community
NASA's_future_exploration_plans
NASA's_technology_development_strategy
NASA's_innovation_initiatives
NASA's_robotics_initiative
NASA's_robotics_portfolio
gptkbp:isRecognizedBy robotics community
gptkbp:isRecognizedFor its innovative technology
gptkbp:isSetIn robotics conferences
gptkbp:isSupportedBy academic research
government funding
research grants
gptkbp:isTestedFor real-world scenarios
various tasks
user interaction.
gptkbp:isTrainedIn performance standards
field trials
simulated environments
gptkbp:isUtilizedFor research purposes
gptkbp:isUtilizedIn robotics education
gptkbp:isVisitedBy gptkb:NASA's_Johnson_Space_Center
open-source software
humanitarian missions
improve disaster response capabilities
gptkbp:launched 2013
gptkbp:participatedIn gptkb:DARPA_Robotics_Challenge
gptkbp:utilizes machine learning