Explore Solutions

dronioX – AI Modular Autonomous Land Management Platform

Full-stack research and development in robotics, geospatial AI,
seed technologies and secure communications for environmental applications.

dronioX integrates research, engineering and data systems into a unified platform designed for scalable deployment across environmental and agricultural domains.

Seed Science

Precision Pelletting R&D

Heavy-lift Drones

Precision & Payload R&D

Geospatial AI & MRV

Auditable Insights

Post-Quantum Secure-Comms

Data Integrity & Security

Solutions

dronioX enables multiple application domains through a shared technology platform combining applied research, modular hardware, aerial operations, geospatial analytics, monitoring systems, and secure communications. Each solution is built on a common engineering and data foundation while addressing a specific operational domain, from reforestation and agriculture to drone hardware and advanced autonomous systems.

This structure allows technologies, research outputs, and field experience to be reused across projects while maintaining a clear focus for each dedicated solution area. It also supports a consistent delivery model in which analysis, hardware, operations, data processing, and reporting can be connected into one workflow.

ReforestX

A Complete Reforestation Technology Ecosystem

ReforestX is designed to support scalable reforestation and ecological restoration by integrating seed preparation, aerial deployment, environmental analysis, and long-term monitoring into one operational workflow. The solution combines biological research with engineered systems so that restoration can be implemented in locations where traditional methods are constrained by terrain, accessibility, timing, or cost.

ReforestX is built for post-fire landscapes, degraded slopes, difficult-access terrain, and other zones where direct field operations are limited. The methodology links seed sourcing and preparation with aerial mission planning, structured deployment, and measurable post-seeding evaluation, enabling a more disciplined and auditable restoration process.

Key Elements & outputs:
  • Seed preparation and pelleting
  • Aerial deployment systems
  • Monitoring and data analysis
  • baseline scanning and repeat monitoring
  • GIS-compatible outputs
  • client-accessible reports / maps / project outputs
  • RGB, LiDAR, thermal, and multispectral analysis capability


Launch ReforestX

AgroDronesX

Precision Agriculture Through Integrated Systems

AgroDronesX focuses on improving agricultural operations through aerial monitoring, geospatial interpretation, and targeted field intervention. The solution is designed to support more efficient decision-making in orchards and other managed agricultural environments by combining sensing, analytics, and operational deployment tools in one workflow.

The system supports early identification of visible and non-visible crop stress, structured site monitoring, and more precise application planning. It is intended for growers and operators who need better visibility over field conditions, stronger evidence for decision-making, and repeatable monitoring over time.

Key Elements
  • Orchard and crop monitoring
  • Data-driven analysis
  • Targeted intervention capabilities
  • baseline scanning and repeat monitoring
  • GIS-compatible outputs
  • client-accessible reports / maps / project outputs
  • RGB, LiDAR, thermal, and multispectral analysis capability


Launch AgroDronesX

DroneBuildX

Modular Drone Platforms for Real-World Deployment

DroneBuildX focuses on the development of modular drone systems designed to support multiple operational scenarios across environmental, agricultural, and industrial applications. The platform is based on the principle that reliable hardware should be reusable, adaptable, and configurable for changing mission requirements.

DroneBuildX supports the development of aerial systems that can be paired with different payloads, sensing packages, and operational tools depending on the project context. This creates a stronger hardware foundation for field deployment and allows lessons learned in one application domain to strengthen performance in another.

Key Elements
  • Modular design
  • Multi-application capability
  • Scalable deployment


Launch DroneBuildX

DronePatrolX

Advanced System Capabilities

DronePatrolX includes advanced capabilities developed within the wider dronioX platform. This section covers higher-security, restricted-access, and advanced autonomy concepts that are not part of the standard public solution pages.

This work supports the continued development of more autonomous drone-enabled systems across environmental and agricultural applications, including future operational evolution of reforestation and precision agriculture workflows. Selected capabilities in autonomy, system control, coordination, secure mission execution, and resilient communications are being advanced within this track and are available only through restricted discussion.

Access to this section is restricted and available upon request.



Request Access

Research

dronioX research integrates multiple disciplines to strengthen technologies already used in real-world deployment. Research across the platform supports continuous improvement of seed technologies, aerial systems, geospatial analytics, monitoring workflows, and secure communications so that field solutions become more robust, scalable, and operationally mature.

Seed Science & Pelleting Research

Our seed science and pelleting research builds directly on the seed-preparation and deployment workflows already developed within the platform. This work extends pellet structure design, protective layering, handling performance, deployment suitability, traceability, and post-deployment behaviour under different terrain and environmental conditions.

The research strengthens seed formats already used in aerial deployment workflows and supports better field handling, batch consistency, manufacturing control, and compatibility with operational deployment systems. It also supports the translation of biological requirements into practical preparation methods suitable for scaling from pilot operations to larger restoration programs.

Autonomous Drone Systems

Our autonomous drone systems research expands the aerial platforms already developed and used across environmental and agricultural workflows. This work includes flight performance, payload integration, modularity, route execution, mission stability, field maintainability, and progressive increases in operational automation.

The research strengthens systems already used for field deployment and supports their continued development toward more advanced and repeatable autonomous operation. It is closely linked to real operating conditions so that improvements in hardware, control logic, and mission execution directly improve field performance.

Geospatial AI & MRV

Our geospatial AI and MRV research extends the site-analysis, monitoring, and reporting capabilities already built into the platform. This includes structured processing of RGB, LiDAR, thermal, and multispectral data for site interpretation, polygon-based planning, repeat-flight comparison, and monitoring outputs across environmental and agricultural use cases.

The work strengthens the analytical layer behind deployed programs by improving how aerial and field-derived datasets are converted into maps, GIS-compatible outputs, monitoring records, and reporting materials. It supports more structured interpretation of field conditions and more consistent delivery of evidence-based outputs for project review and long-term verification.

Secure Communication Technologies

Our secure communication technologies research strengthens the communication layer behind distributed robotic and aerial systems already being developed within the platform. This work expands communication reliability, mission continuity, system resilience, and secure coordination between connected devices operating in field environments.

The research supports the continued advancement of deployed and near-deployment systems by improving the robustness of the operational backbone behind drone-enabled workflows. It is particularly relevant where environmental and agricultural operations require stable communications, stronger control integrity, and a pathway toward more advanced autonomous coordination.



Programs & Pilots

Pilot programs validate the platform in real-world conditions and support transition toward larger-scale deployment. Rather than treating pilots as isolated demonstrations, dronioX uses them as structured validation environments where research, hardware, software, operations, and reporting workflows are tested together. The emphasis is on methodology, repeatability, measurable outputs, and evidence generation that can support future scale-up.

Forestry Program

The forestry program is based on a structured methodology for testing reforestation technologies through the integration of site analysis, seed sourcing and preparation, deployment planning, aerial field execution, and post-seeding monitoring. Work begins with site review, baseline scanning, and operational planning, followed by seed and pellet preparation, mission design, controlled field deployment, and repeat monitoring over time.

This methodology is used to validate how the full workflow performs under real terrain, environmental, and operational conditions. It includes the relationship between seed preparation, deployment method, site suitability, traceability, GIS-compatible outputs, and measurable monitoring data. The program is intended to generate operational evidence that can support wider restoration deployment. Indicative pricing starts from €1,500 per hectare for structured drone-based reforestation services.

Orchard Program

The orchard program applies aerial monitoring and targeted intervention technologies within agricultural environments through a practical and repeatable methodology. Activities begin with aerial scanning and field review, followed by geospatial interpretation, condition assessment, prioritisation of target areas, and planning of operational response or repeat monitoring.

This methodology links field sensing, operational execution, and reporting into one coherent workflow. It supports more structured monitoring, clearer interpretation of field conditions, and better traceability between observed conditions and operational action. In this way, orchard pilots serve both as service delivery and as validation environments for larger-scale agricultural deployment.

Contact

For partnerships, pilot programs or general inquiries, contact us directly or use the form below.

Project powered by iERP Solutions
Address: Jenisejská 45A, Kosice, 040 12 Slovakia, EU
Director: RNDr. Dusan Korcak
E-mail: dusan@ierpsolutions.net



Privacy
Terms


Clients & Partners Access

Secure access is available to authorised clients, institutions, and project partners for project data, maps, reports, monitoring outputs, and downloadable documentation. The client area supports controlled delivery of geospatial data, technical reports, implementation records, and other project files generated during operational and monitoring workflows.

Page Top
We use cookies to enhance your browsing experience, serve personalized ads or content, and analyze our traffic. By clicking "I agree", you consent to our use of cookies. I agree More info