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Published on: August 26, 2018
Digital-Twin-Oriented Virtual Training Environment for Agricultural Robot Navigation: A Vineyard Rover Case Study.
Gábor Kusper1, Zoltán Barócsi2, Péter Csóka3
1Department of IT, Eszterházy Károly Catholic University, 3300 Eger, Hungary.
Sensors (Basel, Switzerland)
|June 26, 2026
Summary
Virtual training environments, using digital twin technology, offer a safe and efficient way to develop agricultural robots. This approach improves robot adaptability and robustness for real-world tasks.
Area of Science:
- Agricultural Robotics
- Digital Twin Technology
- Simulation-Based Training
Background:
- Virtual training environments offer advantages for agricultural robotics development.
- They provide a safe space for algorithm evaluation, reducing risks to robots and crops.
- Virtual environments enable efficient data generation under diverse conditions, improving model adaptability.
Purpose of the Study:
- To reinterpret digital twin technology as an active training environment for agricultural robots.
- To propose a layered framework for training agricultural robots in virtual settings.
- To highlight agriculture as a strong use case for virtual training due to field variability and experimentation costs.
Main Methods:
- Utilized digital twin technology for vineyard robot development.
- Incorporated sensor simulation, procedural map generation, and agriculture-specific movement models.
- Developed and validated a framework for training agricultural robots in virtual environments.
Main Results:
- An autonomous reinforcement learning agent was trained entirely in a virtual environment.
- The agent successfully navigated to 155 out of 161 target points in a simulated vineyard.
- The framework demonstrated the effectiveness of virtual training for agricultural robot navigation.
Conclusions:
- Digital twins serve as active training spaces, not just passive mirrors, for agricultural robots.
- The proposed layered framework facilitates robust training of agricultural robots in virtual settings.
- Virtual training environments are crucial for advancing agricultural robotics, addressing challenges like field variability and labor shortages.