Modern Robotics, Course 4: Robot Motion Planning and Control

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Northwestern University

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Do you want to know how robots work? Are you interested in robotics as a career? Are you willing to invest the effort to learn fundamental mathematical modeling techniques that are used in all subfields of robotics? If so, then the "Modern Robotics: Mechanics, Planning, and Control" specialization may be for you. This specialization, consisting of six short courses, is serious preparation for serious students who hope to work in the field of robotics or to undertake advanced study. It is not a sampler. In Course 4 of the specialization, Robot Motion Planning and Control, you will learn key concepts of robot motion generation: planning a motion for a robot in the presence of obstacles, and real-time feedback control to track the planned motion. Chapter 10, Motion Planning, of the "Modern Robotics" textbook covers foundational material like C-space obstacles, graphs and trees, and graph search, as well as classical and modern motion planning techniques, such as grid-based motion planning, randomized sampling-based planners, and virtual potential fields. Chapter 11, Robot Control, covers motion control, force control, and hybrid motion-force control. This course follows the textbook "Modern Robotics: Mechanics, Planning, and Control" (Lynch and Park, Cambridge University Press 2017). You can purchase the book or use the free preprint pdf. You will build on a library of robotics software in the language of your choice (among Python, Mathematica, and MATLAB) and use the free cross-platform robot simulator V-REP, which allows you to work with state-of-the-art robots in the comfort of your own home and with zero financial investment.

现代机器人技术,课程4:机器人运动计划和控制:您是否想知道机器人的工作方式?您是否对机器人技术感兴趣?您是否愿意投入精力学习在机器人技术的所有子领域中使用的基本数学建模技术? 如果是这样,那么“现代机器人技术:力学,计划和控制”专业知识可能适合您。该专业由六门短期课程组成,为希望在机器人技术领域工作或进修的认真学生提供了认真的准备。它不是采样器。 在该专业的课程4(机器人运动计划和控制)中,您将学习机器人运动生成的关键概念:在存在障碍的情况下为机器人计划运动,以及实时反馈控制以跟踪计划的运动。 “现代机器人”教科书的第10章“运动计划”涵盖了基础材料,例如C空间障碍物,图形和树以及图搜索,以及经典和现代的运动计划技术,例如基于网格的运动计划,随机抽样计划者和虚拟潜力领域。第11章,机器人控制,涵盖了运动控制,力控制和混合运动力控制。 本课程遵循教科书“现代机器人技术:力学,规划和控制”(林奇和帕克,剑桥大学出版社,2017年)。您可以购买该书或使用免费的预印本pdf。您将以自己选择的语言(在Python,Mathematica和MATLAB中)建立在机器人软件库上,并使用免费的跨平台机器人模拟器V-REP,该模拟器可让您使用最新技术机器人在您自己的家中,零财务投资。

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