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Milad Shafiee

8 accepted papers

2024

ExoRecovery: Push Recovery with a Lower-Limb Exoskeleton Based on Stepping Strategy

ICRA 2024poster

Balance loss is a significant challenge in lower-limb exoskeleton applications, as it can lead to potential falls, thereby impacting user safety and confidence. We introduce a control framework for omnidirectional recovery step planning by online optimization of step duration and position in respons…

Cited by 4SourceScholar
2024

Learning-based Hierarchical Control: Emulating the Central Nervous System for Bio-Inspired Legged Robot Locomotion

IROS 2024

Animals possess a remarkable ability to navigate challenging terrains, achieved through the interplay of various pathways between the brain, central pattern generators (CPGs) in the spinal cord, and musculoskeletal system. Traditional bioinspired control frameworks often rely on a singular control p

Cited by 7SourceScholar
2024

ManyQuadrupeds: Learning a Single Locomotion Policy for Diverse Quadruped Robots

ICRA 2024poster

Learning a locomotion policy for quadruped robots has traditionally been constrained to a specific robot morphology, mass, and size. The learning process must usually be repeated for every new robot, where hyperparameters and reward function weights must be re-tuned to maximize performance for each…

Cited by 28SourceScholar
2024

Online Optimization of Central Pattern Generators for Quadruped Locomotion

IROS 2024

Typical legged locomotion controllers are designed or trained offline. This is in contrast to many animals, which are able to locomote at birth, and rapidly improve their locomotion skills with few real-world interactions. Such motor control is possible through oscillatory neural networks located in

Cited by 10SourceScholar
2024

Quadruped-Frog: Rapid Online Optimization of Continuous Quadruped Jumping

ICRA 2024poster

Legged robots are becoming increasingly agile in exhibiting dynamic behaviors such as running and jumping. Usually, such behaviors are either optimized and engineered offline (i.e. the behavior is designed for before it is needed), either through model-based trajectory optimization, or through deep…

Cited by 11SourceScholar
2024

Visual CPG-RL: Learning Central Pattern Generators for Visually-Guided Quadruped Locomotion

ICRA 2024poster

We present a framework for learning visually-guided quadruped locomotion by integrating exteroceptive sensing and central pattern generators (CPGs), i.e. systems of coupled oscillators, into the deep reinforcement learning (DRL) framework. Through both exteroceptive and proprioceptive sensing, the a…

Cited by 18SourceScholar
2023

Puppeteer and Marionette: Learning Anticipatory Quadrupedal Locomotion Based on Interactions of a Central Pattern Generator and Supraspinal Drive

ICRA 2023poster

Quadruped animal locomotion emerges from the interactions between the spinal central pattern generator (CPG), sensory feedback, and supraspinal drive signals from the brain. Computational models of CPGs have been widely used for investigating the spinal cord contribution to animal locomotion control…

Cited by 17SourceScholar