
Explore our expertise and innovative solutions.

Radar survey of migratory birds at sea
Understanding migratory patterns requires sophisticated detection capabilities across diverse environments. Our dual-domain expertise—13 years of terrestrial radar intelligence and 9 years of maritime operations—has shaped comprehensive species movement analysis across the Baltic Basin since 2017.

Aerial surveys of seabirds at sea using photogrammetric methods
Comprehensive seabird distribution analysis requires precision aerial intelligence capabilities. Our photogrammetric methodology employs research aircraft equipped with digital camera arrays, generating orthophoto maps that reveal species patterns.

Aerial surveys of seabirds at sea using direct observation methods
Direct aerial observation provides comprehensive seabird and marine mammal intelligence across designated survey areas. Since 2024, our aerial surveys combine systematic transect coverage with advanced analytical modelling to deliver precise population dynamics and spatial distribution intelligence.

Surveys of seabirds at sea from the deck of research vessels
Seabird population assessment demands systematic observational discipline paired with strategic ecological analysis. Our vessel-based research captures species dynamics across designated study zones and control areas, meeting international protocol requirements while delivering decision-ready intelligence.

Offshore surveys of bat activity using fixed listening points on research buoys
Bat monitoring presents unique methodological challenges across European waters, where regulatory frameworks remain fragmented. Our approach focuses on seasonal migration periods—spring and autumn transitions between breeding grounds and wintering sites—when these mammals utilise offshore environments.

Onshore surveys of bat activity
Understanding bat populations requires comprehensive species identification and seasonal activity assessment across target areas. Our analytical approach integrates echolocation detection, continuous monitoring, habitat assessment, and spatial analysis to deliver complete chiropterological intelligence.

Marine mammal surveys
Murmurat carries out comprehensive monitoring studies of marine mammals for the needs of infrastructure projects carried out in maritime areas, in particular in connection with the preparation, construction and operation of offshore wind farms and other offshore infrastructure investments.

EIA analyses and reports. Modelling of environmental impacts of investments.
Precision environmental analysis transforms potential project constraints into optimization parameters. Radar-based monitoring delivers exact mortality predictions and barrier effect calculations for wind developments and energy infrastructure, converting complex species interactions into quantifiable risk metrics.

Analyses of aviation safety in the context of bird activity at airports
Airport development requires comprehensive airspace intelligence to ensure operational safety and regulatory compliance. Our radar detection systems provide real-time avian activity analysis, creating vectorised flight data with automated object parameters including size, velocity, and directional movement patterns.

AI and Machine Learning in the analysis of data from ornithological radars and orthophotomaps
Environmental intelligence evolves through advanced computational analysis that transforms massive datasets into strategic insights. Our AI and machine learning integration enables automated processing of complex ornithological information at unprecedented scale and precision.

Adaptations of ornithological radars: 3D, HR, VR to operating conditions on board research vessels.
Effective marine ornithological intelligence requires seamless integration with research vessel operations. Our proprietary mounting systems enable complete radar deployment and retrieval within single-day mobilisation cycles, ensuring operational flexibility across diverse maritime projects.


Scientific research and conservation intelligence
Advanced environmental research requires precision methodology that delivers actionable conservation outcomes. Our scientific partnerships demonstrate how sophisticated detection technology transforms conservation strategy from reactive protection to predictive intelligence.