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Advanced Autopilot Technology is Now Within Reach

01.

Path Tracking Technology

MSQUARED ROBOTICS's path tracking technology offers high stability and accuracy even in complex marine environments. By employing nonlinear control techniques, it enables precise path tracking and maintains optimal performance under various marine conditions. Our data-driven control technology allows AI to continuously learn and optimize control performance without the need for a model. Additionally, robust control technology ensures stable path tracking performance by effectively responding to weight and speed changes.

02.

Obstacle Avoidance and Path Planning

MSQUARED ROBOTICS's AI-based obstacle avoidance technology enables autonomous marine systems to recognize and efficiently avoid obstacles in real time. Utilizing deep learning algorithms, the system continuously monitors the surrounding environment and calculates safe paths. The AI-based path planning technology generates and adjusts optimal routes in real-time across various marine environments. This plays a crucial role in maximizing navigation efficiency and increasing mission success rates.

03.

Formation Control

MSQUARED ROBOTICS has developed formation control technology that enables multiple robots to collaborate and perform missions together. This technology allows each robot to share its position and status in real-time, planning and adjusting optimal routes accordingly. Formation control technology enables multiple autonomous systems to work together to successfully complete more complex and large-scale missions. This significantly enhances the efficiency and mission performance capabilities of multi-robot systems.

Next-Generation Marine Platforms

MSQUARED ROBOTICS sets new standards in marine exploration and mission performance through its innovative marine platforms.

AUSV

Hybrid Autonomous Unmanned Surface and Underwater Vehicle

MSQUARED ROBOTICS is developing innovative marine platforms that set new standards in marine exploration and mission performance. We have designed a Hybrid Autonomous Unmanned Surface and Underwater Vehicle (AUSV) capable of freely navigating both on the surface and underwater, providing the ability to perform multipurpose missions in various marine environments. This hybrid AUSV is engineered to efficiently carry out complex tasks such as exploration, rescue, surveillance, and data collection in marine environments.

Modular Autonomous Underwater Vehicles

MSQUARED ROBOTICS offers modular unmanned submersibles that can be customized with various modules to meet specific mission requirements. This modular design allows for flexible equipment changes based on the mission characteristics, providing tailored solutions for diverse marine operations. Through continuous research, development, and technological innovation, MSQUARED ROBOTICS is presenting a new paradigm in marine exploration and mission performance.

Intelligent Mission Execution System

MSQUARED ROBOTICS's mission planning and management system utilizes advanced artificial intelligence technology to innovatively enhance the mission performance of autonomous marine systems.

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Intelligent Mission Planning Generation​

  • It collects and analyzes real-time data from changing marine environments and incorporates this information into mission planning.

  • It automatically generates and adjusts optimal mission plans based on environmental conditions and mission requirements.

Real-Time Data Analysis

  • It collects and analyzes real-time data from the sensors of autonomous systems.

  • Based on the analyzed data, AI makes real-time decisions and adjusts plans as needed.

AI-Based Decision-Making System

  • It supports fast and accurate decision-making in complex situations through the latest AI algorithms.

  • By integrating data from various sensors, it accurately perceives and responds to the current situation.

Mission Progress Monitoring

  • It monitors mission progress in real-time and provides feedback.

  • Based on the feedback, it continuously optimizes the mission plan, significantly enhancing mission efficiency and success rates.

Technology

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