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自動化機器人

  • AI platform for optimizing customer and employee experiences.
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    What is Kore.ai?
    Kore.ai is a leading platform offering innovative solutions for conversational AI and generative AI. It helps enterprises build, manage, and deploy virtual assistants to optimize various interactions. With tools for automated bot creation, natural language processing, and integration capabilities, Kore.ai streamlines digital workflows and enhances user experiences across multiple channels.
  • NVIDIA Eureka is an AI agent designed for enhanced robotics research.
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    What is NVIDIA Eureka?
    NVIDIA Eureka is a cutting-edge AI agent that integrates state-of-the-art sensors and algorithms to enhance the capabilities of robots. It empowers these machines to sense their surroundings with unprecedented accuracy and to make real-time decisions based on environmental feedback. Eureka’s features enable robots to adapt to complex scenarios, improving their operational efficiency in various tasks, from navigation to object manipulation.
  • NavGround is an open-source 2D navigation framework providing reactive AI motion planning and obstacle avoidance for differential drive robots.
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    What is NavGround?
    NavGround is a comprehensive AI-driven navigation framework that delivers reactive motion planning, obstacle avoidance, and trajectory generation for differential drive and holonomic robots in 2D environments. It integrates dynamic map representations and sensor fusion to detect static and moving obstacles, applying velocity obstacle methods to compute collision-free velocities adhering to robot kinematics and dynamics. The lightweight C++ library offers a modular API with ROS support, enabling seamless integration with SLAM systems, path planners, and control loops. NavGround’s real-time performance and on-the-fly adaptability make it suitable for service robots, autonomous vehicles, and research prototypes operating in cluttered or dynamic scenarios. The framework’s customizable cost functions and extensible architecture facilitate rapid experimentation and optimization of navigation behaviors.
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