Executive Development Programme in Robotics Design: High-Performance Systems
-- ViewingNowThe Executive Development Programme in Robotics Design: High-Performance Systems certificate course is a comprehensive program designed to provide learners with essential skills in robotics design. With the increasing demand for automation and advanced manufacturing systems, this course is more important than ever for career advancement in the engineering and technology industries.
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⢠Robotics Design Fundamentals: Introduction to the principles and concepts of robotics design, including kinematics, dynamics, and control systems.
⢠High-Performance Systems Architecture: Exploration of advanced architectures for high-performance robotics systems, including multi-core processors, field-programmable gate arrays, and graphics processing units.
⢠Sensors and Perception: Overview of various sensors used in robotics, such as cameras, lidars, and ultrasonic sensors, and their integration into perception systems.
⢠Motion Planning and Control: Techniques for motion planning and control in high-performance robotics systems, including trajectory generation, optimization, and feedback control.
⢠Machine Learning in Robotics Design: Introduction to machine learning techniques and their application in robotics design, including supervised, unsupervised, and reinforcement learning.
⢠Robotics Design Tools and Methodologies: Overview of design tools and methodologies used in robotics, including computer-aided design, simulation, and prototyping.
⢠Robotics Applications: Exploration of various robotics applications, such as manufacturing, healthcare, and transportation, and the design considerations for each application.
⢠Robotics Standards and Regulations: Overview of industry standards and regulations for robotics design, including safety, interoperability, and performance standards.
⢠Robotics Ethics and Society: Examination of the ethical and societal implications of robotics, including privacy, security, and job displacement.
⢠Robotics Design Project: Capstone project in which participants design and prototype a high-performance robotics system using the concepts and tools learned throughout the program.
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