AI Flying Robot for Safe Capture of Unauthorized Drones
EU co-funded project aiming to create AI-equipped flying robot for safe capture of unauthorized drones in protected space.
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Fly4Future actively participates in drone research projects across various fields and is involved in both funded research projects and application-oriented projects. Our focus is on transferring knowledge to develop autonomous drone products.
The research projects are focused on GNSS-denied flying, agile UAV motion, precise state estimation, motion and trajectory planning, and more.
Participation
EU co-funded project aiming to create AI-equipped flying robot for safe capture of unauthorized drones in protected space.
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The Autonomous Air and Ground Robots project aims to design a system of autonomous aerial and ground robotic units, an operator control station, and necessary infrastructure.
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System for automated monitoring and maintenance of solar parks employing artificial intelligence and unmanned aerial platforms.
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From modular drones to tailored software and field-tested platforms, we help you build and scale your research in autonomous flying systems.
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Multi-robot aerial system for autonomous surveillance and inspection of large industrial complexes resistant to communication and GNSS signal failures.
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Research project focusing on supporting implementation of urban air mobility for parcel delivery.
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Research project aims on developing an autonomous aerial system for precision agriculture, focusing on energy-efficient surveying and monitoring of crop fields and grasslands.
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EU co-funded project aiming to strengthen the international position and global expansion of Fly4Future s.r.o.
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EU co-funded project aiming to protect the new F4F FLY4FUTURE label, graphic representation.
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EU co-funded research project developing an innovative collaborative robot system that combines drones, land and water robots for deployment in challenging environments.
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Research project aiming to develop a drone capable of autonomous flight in a rugged power plant environment.
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Research project focusing on establishing an interface for the intuitive and reliable operation of a heterogeneous robotic team with state monitoring and a safe failure tolerance system.
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AeroSTREAM Open Remote Laboratory aims to provide an open remote laboratory for autonomous unmanned aerial vehicles as part of AeroSTREAM’s Open Science initiative.
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Research project focusing on development of automated data collection system for transmission power line inspection using UAVs for a more reliable and safer electric transmission network.
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EU funded drone research project focused on developing a drone platform capable of providing various services on both water and land.
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Demonstration project for the usage of fully autonomous drones in security CBRNe (Chemical, Biological, Radiological, Nuclear and explosives), sponsored by the European Space Agency (ESA).
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Cooperation
We cooperate with public and private research institutions, industrial stakeholders and drone technology end users. Funding runs through EU, ESA and EDA programmes, national agencies such as TAČR and the Czech Ministry of Industry and Trade, and the funding bodies of private research institutes.
Our work covers TRL 3 to TRL 9 — from fundamental research to software, hardware and advanced platforms built for research consortia.

At Fly4Future, we are dedicated to maintaining the highest standards of security and regulatory compliance. All of our UAV platforms are fully capable of meeting NDAA compliance, ensuring that our products are free from components sourced from prohibited manufacturers as outlined in Section 889 of the U.S. National Defense Authorization Act (NDAA), including Huawei, ZTE, Hytera, Hikvision, and Dahua.
We rely on trusted and verified supply chains for all critical components, guaranteeing that our UAVs meet U.S. government standards for secure operations.
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