Intendierte Lernergebnisse
Understanding Fundamental Concepts: By the end of this lab, students will develop a solid understanding of the fundamental concepts that form the foundation of robotics systems design and implementation. They will explore key principles such as kinematics, dynamics, perception, control, and motion planning. Through hands-on experimentation and theoretical exercises, students will gain proficiency in applying these concepts to analyze and solve robotics problems.Applying Basic Algorithms: This lab emphasizes the practical implementation of basic algorithms commonly used in robotics. Students will learn how to design, implement, and evaluate algorithms for essential tasks such as sensor data processing, localization, mapping, and navigation. They will develop a strong grasp of algorithmic thinking and problem-solving techniques, enabling them to effectively tackle real-world challenges encountered in robotics systems.Integrating Theory and Practice: The Robotics Fundamentals Lab provides a unique opportunity for students to bridge the gap between theoretical knowledge and practical application. Through hands-on projects and experiments, students will gain experience in working with robotics hardware and software platforms. They will learn how to integrate theoretical concepts with practical implementation, fostering a holistic understanding of robotics systems and their capabilities.Exploring Important Robotics Applications: In addition to fundamental concepts and algorithms, this lab offers an overview of diverse applications in the field of robotics. Students will be exposed to the most significant and cutting-edge applications, including industrial automation, medical robotics, autonomous vehicles, and assistive robotics. By studying these applications, students will gain insights into the impact of robotics on various industries and understand the challenges and opportunities in different application domains.Collaboration and Communication: The lab environment encourages collaborative learning and effective communication skills. Students will work in teams to complete projects, fostering teamwork, problem-solving, and project management abilities. They will also develop the capacity to articulate their ideas, methodologies, and results through oral presentations and written reports, enhancing their communication skills, which are essential for successful collaboration in the robotics field.By successfully completing the Robotics Fundamentals Lab, students will be well-equipped with the foundational knowledge, practical skills, and problem-solving mindset necessary to pursue further studies or careers in robotics research, development, and innovation.
Lehrmethodik inkl. Einsatz von eLearning-Tools
Lecture
Inhalt/e
1. SELECTED TOPICSExplore a selection of key topics in the field of robotics that lay the foundation for further study and application.2. GENERAL INTRODUCTIONGain an understanding of the fundamental concepts and principles underlying robotics.3. ROBOTICS OVERVIEW AND APPLICATIONSExplore the broad scope of robotics and its diverse range of applications in various industries.4. SHORT SURVEY / CLASSIFICATION OF SENSORS AND ACTUATORSSurvey different types of sensors and actuators used in robotics, and learn how they enable robots to perceive and interact with the environment.5. HUMAN-ROBOT INTERACTION – A BRIEF INTRODUCTIONDiscover the basics of human-robot interaction and explore the ways in which robots can effectively collaborate and communicate with humans.6. MECHANICAL DESIGNDelve into the principles of mechanical design for robots, including considerations such as structural integrity, efficiency, and mobility.7. DIRECT KINEMATICS Learn how to model and analyze the motion of robot manipulators using direct kinematics, enabling precise control and positioning.8. INVERSE KINEMATICS Explore the inverse kinematics problem, which involves determining the joint configurations required to achieve a desired end-effector pose.9. SELF-DRIVING VEHICLES - Discover the fascinating field of autonomous vehicles and study the technologies and algorithms that enable vehicles to navigate and make decisions in real-world environments.10. PATH PLANNINGGain insights into the algorithms and techniques used for planning optimal paths for robots, allowing them to navigate efficiently and avoid obstacles.11. INTRODUCTION TO PROBABILISTIC ROBOTICSUnderstand the principles of probabilistic robotics, which involve incorporating uncertainty and probability models into robot perception, localization, and mapping.12. A SHORT INTRODUCTION TO ROBOT CONTROL + AI REASONING Explore the basics of robot control systems and artificial intelligence reasoning techniques, including the use of algorithms and algorithms for decision-making and autonomous behavior.