Living Labs
Drone lab

Drone Lab is a university-wide research and development facility dedicated to unmanned aerial vehicles and systems (UAV/UAS) and their applications in industry, science and research. It brings together academic staff and students from the Faculty of Electrical Engineering and Computer Science, the Faculty of Mechanical Engineering and the Faculty of Mining and Geology. The laboratory develops advanced autonomous systems, integrates specialised sensors, designs mission-specific aerial platforms and transforms research outcomes into practical solutions.

Its activities connect research, engineering, education and student projects, with strong emphasis on interdisciplinary cooperation, experimental validation, safe operation and deployment in real environments. Drone Lab provides a shared environment for developing technologies for inspection, mapping, environmental monitoring, infrastructure assessment, data acquisition and intelligent autonomous missions.

Industry
Services & Equipment

Dron LAB offers research cooperation, feasibility assessment, experimental development and specialised measurement services. The laboratory can support partners from the initial definition of a technical problem through system design, field testing, data processing and interpretation of results.

The laboratory has all the necessary equipment for the development and implementation of UAV devices. Modern measuring and diagnostic instruments are available. A small protected polygon is available for testing UAVs. The laboratory is also equipped with components for rapid prototyping, including 3D printers, milling machines, etc.

Our cooperation includes:

Aerial inspection and technical documentation

Image-based and sensor-based inspection of industrial objects, buildings, roofs, energy infrastructure and inaccessible structures.

Mechanical, electronic and software integration of specialised sensors, data loggers, communication units and mission-specific modules.

Student projects, demonstrations, workshops and expert training in UAV technologies, sensing, data processing and safe mission preparation.

Integration of lightweight environmental sensors and spatially resolved acquisition of selected physical and chemical quantities.

Laboratory and field testing, repeatability assessment, operational evaluation and preparation of technical reports.

Documentation and measurement support for slopes, rock faces, mining areas and locations affected by geotechnical risks.

Photogrammetric data acquisition, orthophoto generation, digital surface models and three-dimensional documentation of sites and objects.

Time synchronisation, filtering, calibration, georeferencing, multisensor fusion, statistical evaluation and visualisation.

Drone Lab supports partners from the initial definition of a technical problem through system design, field testing, data processing and interpretation of results.

Design of telemetry, data transfer and IoT connectivity between UAVs, edge devices, gateways and cloud or institutional infrastructure.

Equipment & facilities

Protected UAV testing polygon

Enables safe experimental flights, repeatability assessment and preparation of missions before deployment in real environments.

Robotics

Accelerates iterative development of mechanical structures, custom payloads and mission-specific UAV modules.

Embedded Systems Robotics

Supports design, assembly, testing and operational validation of unmanned aerial platforms and mission-specific payloads.

Embedded Systems Robotics

TOP Publications

Skula M., Pies M., Hajovsky R., Velicka J., Vala D.
Multi-criteria selection of a synchronisation word for low-power IoT receivers based on the IQRF standard
Multi-criteria selection of a synchronisation word for low-power IoT receivers based on the IQRF standard
Scientific Reports, 16, art. no. 8777, 2026.
Velicka J., Pies M., Hajovsky R., Barnova K., Martinek R.
Smart oxygen monitoring in hospitals: A pilot study during COVID-19
Smart oxygen monitoring in hospitals: A pilot study during COVID-19
Scientific Reports, 15, art. no. 3160, 2025.
Recmanik M., Martinek R., Nedoma J., Jaros R., Pelc M., Hajovsky R., Velicka J., Pies M., Sevcakova M., Kawala-Sterniuk A.
A review of patient bed sensors for monitoring of vital signs
A review of patient bed sensors for monitoring of vital signs
Sensors, 24 (15), 2024.
Hajovsky R., Pies M., Velicka J., Slany V., Rous R., Danys L., Martinek R.
Design of an IoT-Based Monitoring System as a Part of Prevention of Thermal Events in Mining and Landfill Waste Disposal Sites: A Pilot Case Study
Design of an IoT-Based Monitoring System as a Part of Prevention of Thermal Events in Mining and Landfill Waste Disposal Sites: A Pilot Case Study
IEEE Transactions on Instrumentation and Measurement, 72, art. no. 5500114, 2023.
Pieš M., Hájovský R., Velička J.
Wireless Measuring System for Monitoring the Condition of Devices Designed to Protect Line Structures
Wireless Measuring System for Monitoring the Condition of Devices Designed to Protect Line Structures
Sensors, 20 (9), 2020.

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