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Lecture
Learning Modulation for DS
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Related lectures (31)
Obstacle Avoidance with DS
Explores obstacle avoidance using Dynamical Systems for robots, focusing on modulation, stability guarantees, and contraction theory.
Learning and Adaptive Control for Robots: SEDS & LPV-DS
Explores learning and adaptive control for robots through SEDS and LPV-DS, emphasizing stability, non-linear dynamics, and optimization.
Force Control with Dynamical Systems
Covers compliant and force control for robots using Dynamical Systems.
Robot Learning and Control
Covers learning and adaptive control for robots, focusing on real-time reactivity and path planning using dynamical systems.
Learning and Adaptive Control for Robots: Extensions to DS
Explores coupled and uncoupled dynamical systems, stability, hand-arm coupling, and adaptation in robotics.
Acquiring Data for Learning
Explores training robots through reinforcement learning and learning from demonstration, highlighting challenges in human-robot interaction and data collection.
Stable Estimator of Dynamical System (SEDS)
Explores Stable Estimator of Dynamical Systems (SEDS) for robots, covering stability, modeling, optimization, and limitations.
Compliant Control for Robots: Impedance and Variable Stiffness
Explores compliant control for robots through impedance and variable stiffness, enabling safe and adaptive interactions with the environment.
Learning Physically-Consistent Gaussian Mixture Model
Explores Physically-Consistent Gaussian Mixture Models for robot control and trajectory learning.
Learning and Adaptive Control for Robots: Overview and Path Planning
Explores learning and adaptive control for robots, focusing on challenges, path planning with dynamical systems, and real-time planning applications.
Radar Technologies: Applications and Challenges in Robotics
Discusses radar technologies, their applications in robotics, and challenges in mmWave imaging.
Acquiring Data for Learning: Modern Approaches and Challenges
Explores modern approaches and challenges in acquiring data for learning optimal controllers through demonstrations and data-driven methods.
Improving Robot Design: Data-Driven Approaches
Explores data-driven approaches to improve robot design, focusing on compliance, soft materials, and complex interactions.
Learning and Adaptive Control for Robots
Explores learning, adaptive control, cutting soft tissue, and robotic implementation for robots.
Multimodal Analytics: Human-Robot Interaction and Learning Processes
Delves into Human-Robot Interaction, student engagement, and learning analytics using multimodal data to enhance educational processes.
Radar and Communications Technologies: Applications and Challenges
Covers radar and communication technologies, focusing on their applications in sensing and the challenges faced in modern wireless communications.
What is a Robot
Delves into the definition and capabilities of robots based on various sources.
Collaborative Robots in the Wild: Challenges and Future Directions
Explores challenges and future directions of collaborative robots in real-world scenarios from a human-centric perspective.
Signals and Systems: Sampling Theorem and Applications
Discusses the sampling theorem and its applications in signal processing.
Computational Robot Design: Morphological Intelligence and Simulation
Explores computational robot design, morphological intelligence, simulation, and innovative contact dynamics solutions.
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