CyberRobotix.AI

Testbeds, simulation environment for cybersecurity
and safety evaluations of autonomous robots and swarms

Logo CyberRobotix.AI

Cybersecurity and safety requirements towards autonomous robots are orders of magnitude stricter compared to any earlier consumer products.

The danger of hacking robots that can freely move around in public places may tragically lead to lethal consequences.

The stakes are getting higher.

SIMULATIONS FOR

Single robots

Single robots

  • Simulation environment to test the safety of individual robots in various simulated scenarios
  • Stress testing for security, fault tolerance and operational integrity under different environmental conditions
Cooperating robots

Cooperating robots

  • Simulation of multiple robots working together
  • Testing cooperation mechanisms, communication protocols and coordinated task execution
  • Safety and security validation ensuring that cooperation does not lead to emergent risks
Swarms

Swarms

  • Simulating large-scale swarms of autonomous robots
  • Ensuring the swarm’s collective behavior remains secure, safe and stable even under complex, dynamic and potentially adversarial conditions

TECHNOLOGIES

Digital twins

Digital Twins

  • A realistic 3D model of the robot’s body is used in simulation
  • All sensors are emulated as a virtual reality for robots
  • Commands towards robotic actuators control the movement within the simulation
Software-in-the-Loop

Software-in-the-Loop

  • SiL technology ensures that the same control algorithms and neural networks are used for testing and for real operations
  • Support for hybrid solutions of combining cloud based remote control with on device edge computing
Hardware-in-the-Loop

Hardware-in-the-Loop

  • HiL technology provides identical execution environment in simulation and in reality
  • Simulated connections to sensors and actuators should be solved at electronics level
HSM-in-the-Loop

HSM-in-the-Loop

  • For secure and reliable identification of robots the root of trust is provided by a Hardware Security Module
  • Strong encryption based solutions

TESTBEDS

CRAI Cluster 24

CRxAI Cluster 24

  • Cluster of 24 NVIDIA Jetson Orin Nano
  • NVIDIA Ampere architecture GPUs
  • 1608 TOPS performance
  • 192 GB RAM
  • 48 TB SSD
CRAI Cluster 48

CRxAI Cluster 48

  • Cluster of 48 NVIDIA Jetson Orin Nano
  • NVIDIA Ampere architecture GPUs
  • 3216 TOPS performance
  • 384 GB RAM
  • 96 TB SSD
CRAI Cluster 48wHSM

CRxAI Cluster 48wHSM

  • Cluster of 48 NVIDIA Jetson Orin Nano
  • NVIDIA Ampere architecture GPUs
  • 3216 TOPS performance
  • 384 GB RAM
  • 96 TB SSD
  • 48 Infineon Optiga TPM 2.0

NEWS

Taiwan Smartcity Summit and Expo

Taiwan Smartcity Summit and Expo

CyberRobotix is attending the SmartCity Summit & Expo (SCSE) 2025 in Taipei, Taiwan. As a pioneer in cybersecurity and safety for autonomous robots, we will showcase our state-of-the-art simulation environments and testing platforms that ensure robots operate securely and reliably. Appearing as part of the Hungarian Pavilion, we will highlight how our cutting-edge technologies contribute to smarter and safer cities. We warmly invite all attendees to visit our booth and experience firsthand how CyberRobotix is shaping the future of secure autonomous robotics.

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AI4CYBER – Artificial Intelligence for Next Generation Cybersecurity

AI4CYBER – Artificial Intelligence for Next Generation Cybersecurity

AI4CYBER is a European Union-funded research project dedicated to enhancing cybersecurity by leveraging artificial intelligence. Running from October 1, 2022, to September 30, 2025, the project aims to develop an ecosystem of AI-based services to bolster the robustness, resilience, and autonomous response capabilities of critical systems against advanced and AI-powered cyberattacks. ​

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