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Technology Factsheet

Polaris RZR ProR

Category: Robotics > Characterization and Inspection > Wheeled/Tracked System
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Carnegie Robotics specializes in cutting-edge autonomous vehicle solutions, offering a range of embedded computers, stereo cameras, robotic controllers, and off-road platforms. Their product lineup includes high-performance computing devices like the Qualcomm AMR Computer and CardShark™ for advanced robotics applications. The company also provides state-of-the-art stereo cameras, including thermal and long-range models, tailored for both indoor and outdoor autonomous navigation. Their Stallion off-road vehicle platform integrates robust autonomy capabilities, featuring drive-by-wire technology, fail-safe braking, and sensor fusion for superior terrain adaptability. Additionally, Carnegie Robotics delivers specialized autonomy solutions across industries such as defense, agriculture, and industrial cleaning, reinforcing their commitment to innovation in autonomous systems.

Benefits

The benefits of these advanced robotics products lie in their ability to enhance efficiency, safety, and precision across various applications. The ruggedized embedded computers and stereo cameras enable real-time perception and decision-making, essential for autonomous vehicles operating in complex environments. Off-road platforms like Stallion offer military-grade durability and high-speed autonomy, making them suitable for defense, exploration, and industrial automation. Custom solutions, such as the Rowbot for agriculture and the SPOTCAM+IR for defense, demonstrate Carnegie Robotics’ expertise in tailoring technology to industry needs. By integrating advanced GNSS systems, sensor fusion, and AI-driven navigation, these products contribute to reducing human intervention while improving operational reliability and performance.

Limitations

Carnegie Robotics’ autonomous systems come with certain limitations. The high cost of these specialized robotics platforms may limit accessibility for smaller businesses or research institutions. Additionally, while their stereo cameras and embedded computing systems provide excellent performance, they may require significant computational resources, making integration complex for users with limited technical expertise. Off-road vehicle platforms like Stallion, though highly capable, depend on robust terrain mapping and localization, which may pose challenges in environments with unpredictable obstacles or poor GPS coverage. Furthermore, regulatory and safety concerns surrounding autonomous systems in defense and industrial sectors could slow widespread adoption. Nevertheless, Carnegie Robotics continues to push the boundaries of autonomy, addressing these challenges through continuous innovation.

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