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Keran Ye

5 accepted papers

2025

Deformable Multibody Modeling for Model Predictive Control in Legged Locomotion with Embodied Compliance

ICRA 2025

The paper presents a method to stabilize dynamic gait for a legged robot with embodied compliance. Our approach introduces a unified description for rigid and compliant bodies to approximate their deformation and a formulation for deformable multibody systems. We develop the centroidal composite pre

Cited by 0SourceScholar
2024

Design and Central Pattern Generator Control of a New Transformable Wheel-Legged Robot

ICRA 2024poster

This paper introduces a new wheel-legged robot and develops motion controllers based on central pattern generators (CPGs) for the robot to navigate over a range of terrains. A transformable leg-wheel design is considered and characterized in terms of key locomotion characteristics as a function of t…

Cited by 1SourceScholar
2023

A Novel Lockable Spring-Loaded Prismatic Spine to Support Agile Quadrupedal Locomotion

IROS 2023poster

This paper introduces a way to systematically investigate the effect of compliant prismatic spines in quadrupedal robot locomotion. We develop a novel spring-loaded lockable spine module, together with a new Spinal Compliance-Integrated Quadruped (SCIQ) platform for both empirical and numerical rese…

Cited by 2SourceScholar
2023

Evaluation of Legged Robot Landing Capability Under Aggressive Linear and Angular Velocities

ICRA 2023poster

This paper proposes a method to evaluate the capability of aggressive legged robot landing under significant touchdown linear and angular velocities upon impact. Our approach builds upon the Planar Inverted Pendulum with Flywheel (PIPF) model and introduces a landing framework for the first stance s…

Cited by 4SourceScholar
2021

Modeling and Trajectory Optimization for Standing Long Jumping of a Quadruped with A Preloaded Elastic Prismatic Spine

IROS 2021poster

This paper presents a novel methodology to model and optimize trajectories of a quadrupedal robot with spinal compliance to improve standing jump performance compared to quadrupeds with a rigid spine. We introduce an elastic model for a prismatic robotic spine that is actively preloaded and mechanic…

Cited by 13SourceScholar