Makani M600

GPTKB entity

Statements (68)
Predicate Object
gptkbp:instanceOf energy kite
gptkbp:aimsTo cost of energy
gptkbp:city power generation equipment
gptkbp:controls autonomous flight control
gptkbp:designedFor renewable energy generation
gptkbp:developedBy gptkb:Makani_Technologies
gptkbp:firstFlight 2016
up to 8 hours
up to 1000 meters
gptkbp:generator 600 kW
gptkbp:hasCollaboratedWith international organizations
research institutions
energy companies
technology partners
gptkbp:hasDescription multi-rotor kite
gptkbp:hasMission 60 meters
gptkbp:hasTouristAttraction carbon fiber
https://www.w3.org/2000/01/rdf-schema#label Makani M600
gptkbp:isConsidered sustainable technology
disruptive technology
alternative energy source
future of energy generation
next-generation energy solution
gptkbp:isDesignedFor safety features
user-friendly interface
maximize energy output
harvest wind energy
gptkbp:isEvaluatedBy environmental impact
industry analysts
commercial viability
energy experts
gptkbp:isFacilitatedBy ground station
gptkbp:isFamilyFriendly true
gptkbp:isPartOf gptkb:Makani_project
renewable energy solutions
sustainable energy initiatives
energy transition strategies
clean energy movement
energy diversification strategies
energy innovation ecosystem
Google_X_projects
gptkbp:isPromotedBy environmental organizations
gptkbp:isRelatedTo airborne wind energy systems
gptkbp:isSupportedBy community initiatives
investors
academic research
government grants
gptkbp:isTestedFor performance metrics
energy efficiency
reliability
scalability
safety compliance
different wind speeds
gptkbp:isTrainedIn gptkb:Hawaii
real-world applications
regulatory standards
field trials
various weather conditions
controlled environments
gptkbp:isUsedIn energy production trials
gptkbp:isUtilizedIn energy harvesting technology
gptkbp:isVisitedBy advanced aerodynamics
reduce carbon footprint
enhance energy security
support grid stability
offshore_wind_energy
gptkbp:operatesIn high-altitude winds
gptkbp:uses kite power technology