Certificate in Robot Navigation & Obstacle Strategies

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The Certificate in Robot Navigation & Obstacle Strategies is a comprehensive course that equips learners with essential skills for navigating robots in various environments. This certification emphasizes the importance of robot autonomy and intelligent decision-making when encountering obstacles.

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이 과정에 대해

In today's industry, there is a growing demand for professionals who can design, implement, and optimize navigation and obstacle avoidance systems in robotics. This course will provide learners with the necessary knowledge and skills to meet this demand and excel in their careers. Through hands-on exercises, real-world case studies, and industry-standard tools, learners will gain a deep understanding of robot navigation algorithms, sensor technology, and path planning strategies. By the end of this course, learners will have the skills to develop and implement advanced navigation and obstacle avoidance systems, making them highly valuable to potential employers in the robotics industry.

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완료까지 2개월

주 2-3시간

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과정 세부사항

• Introduction to Robot Navigation – Understanding the basics of robot navigation, different types of navigation systems, and their applications. • Sensors for Robot Navigation – Exploring various sensors used for robot navigation such as ultrasonic, infrared, and LIDAR sensors. • Mapping and Localization – Learning about simultaneous localization and mapping (SLAM) techniques, grid-based and topological maps, and particle filters. • Obstacle Detection and Avoidance – Understanding the algorithms and techniques used for detecting obstacles and planning a safe path for robot navigation. • Path Planning for Robot Navigation – Delving into various path planning algorithms such as A\*, Dijkstra, and Rapidly-exploring Random Tree (RRT). • Mobile Robot Navigation – Focusing on the navigation of mobile robots, including ground, aerial, and underwater vehicles. • Advanced Navigation Strategies – Exploring advanced navigation strategies such as swarm robotics, multi-robot systems, and adaptive navigation. • Simulation and Testing of Robot Navigation – Learning about simulators and testing tools for robot navigation, including Gazebo, Webots, and V-REP.


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