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Yangwei You

13 accepted papers

2024

Optimization Based Dynamic Skateboarding of Quadrupedal Robot

ICRA 2024poster

Robot skateboarding is a novel and challenging task for legged robots. Accurately modeling the dynamics of dual floating bases and developing effective planning and control methods present significant complexities in accomplishing skateboarding behavior. This paper focuses on enabling the quadrupeda…

Cited by 1SourceScholar
2024

State Estimation Transformers for Agile Legged Locomotion

IROS 2024poster

We propose a state estimation method that can accurately predict the robot’s privileged states to push the limits of quadruped robots in executing advanced skills such as jumping in the wild. In particular, we present the State Estimation Transformers (SET), an architecture that casts the state esti…

Cited by 1SourceScholar
2023

Run and Catch: Dynamic Object-Catching of Quadrupedal Robots

IROS 2023poster

Quadrupedal robots are performing increasingly more real-world capabilities, but are primarily limited to locomotion tasks. To expand their task-level abilities of object acquisition, i.e., run-to-catch as frisbee catching for dogs, this paper developed a control pipeline using stereo vision for leg…

Cited by 2SourceScholar
2021

Locomotion Adaptation in Heavy Payload Transportation Tasks with the Quadruped Robot CENTAURO

ICRA 2021poster

This paper presents a reactive legged locomotion generation scheme that enables our quadruped robot CEN-TAURO to adapt to varying payloads while walking. The center-of-mass (CoM) trajectories are generated in real time in a model predictive control (MPC) fashion, trading off large stability margins…

Cited by 19SourceScholar
2021

State Estimation for Hybrid Wheeled-Legged Robots Performing Mobile Manipulation Tasks

ICRA 2021poster

This paper introduces a general state estimation framework fusing multiple sensor information for hybrid wheeled-legged robots performing mobile manipulation tasks. At the core of the state estimator is a novel unified odometry for hybrid locomotion which can seamlessly maintain tracking and has no…

Cited by 12SourceScholar
2021

Supervised Autonomy for Remote Teleoperation of Hybrid Wheel-Legged Mobile Manipulator Robots

IROS 2021poster

This paper proposes an improved supervised autonomy framework for remote teleoperation of a quadrupedal bimanual mobile manipulator in an unknown environment, with the usage of advanced perception technology and allowing the operator to easily assist the robot with decision making for executing task…

Cited by 6SourceScholar
2020

Contact-Implicit Trajectory Optimization Using an Analytically Solvable Contact Model for Locomotion on Variable Ground

RA-L 2020

This letter presents a novel contact-implicit trajectory optimization method using an analytically solvable contact model to enable planning of interactions with hard, soft, and slippery environments. Specifically, we propose a novel contact model that can be computed in closed-form, satisfies frict

Cited by 31SourceScholar
2020

Explore Bravely: Wheeled-Legged Robots Traverse in Unknown Rough Environment

IROS 2020poster

This paper addressed a challenging problem of wheeled-legged robots with high degrees of freedom exploring in unknown rough environments. The proposed method works as a pipeline to achieve prioritized exploration comprising three primary modules: traversability analysis, frontier-based exploration a…

Cited by 12SourceScholar
2020

Towards More Possibilities: Motion Planning and Control for Hybrid Locomotion of Wheeled-Legged Robots

RA-L 2020

This letter proposed a control framework to tackle the hybrid locomotion problem of wheeled-legged robots. It comes as a hierarchical structure with three layers: hybrid foot placement planning, Centre of Mass (CoM) trajectory optimization and whole-body control. General mathematical representation

Cited by 26SourceScholar
2018

Neural-Network-Controlled Spring Mass Template for Humanoid Running

IROS 2018poster

To generate dynamic motions such as hopping and running on legged robots, model-based approaches are usually used to embed the well studied spring-loaded inverted pendulum (SLIP) model into the whole-body robot. In producing controlled SLIP-like behaviors, existing methods either suffer from online…

Cited by 8SourceScholar
2017

A torque-controlled humanoid robot riding on a two-wheeled mobile platform

IROS 2017poster

This paper is motivated by the questions: What would happen if a humanoid robot is put on a Segway? Is it possible for the humanoid robot to use this transportation device that is specifically designed for human? Simulation involving a two-wheeled mobile platform (TWMP) and our humanoid robot COMAN…

Cited by 12SourceScholar
2015

From one-legged hopping to bipedal running and walking: A unified foot placement control based on regression analysis

IROS 2015poster

This paper aims at developing a unified and adaptive foot placement control for legged robots. The locomotion control of legged robots can be classified into three parts as body height control, body attitude control, and forward velocity control. In our study, the body attitude is controlled at stan…

Cited by 9SourceScholar