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Linzhu Yue

9 accepted papers

2026

Traversability-Aware Legged Navigation by Learning from Real-World Visual Data

ICRA 2026poster

The enhanced mobility brought by legged locomotion empowers quadrupedal robots to navigate through complex and unstructured environments. However, optimizing agile locomotion while accounting for the varying energy costs of traversing different terrains remains an open challenge. Most previous work …

2025

Robust Model Predictive Control for Quadruped Locomotion Under Model Uncertainties and External Disturbances

IROS 2025

Model Predictive Control (MPC) enables agile and robust locomotion in quadruped robots but is sensitive to model uncertainties and environmental variations. This paper presents a Tube-Based Robust MPC (TR-MPC) framework for quadruped locomotion under uncertainties, modeled as parameter mismatches an

Cited by 0SourceScholar
2024

A Fast Online Omnidirectional Quadrupedal Jumping Framework Via Virtual-Model Control and Minimum Jerk Trajectory Generation

IROS 2024poster

Exploring the limits of quadruped robot agility, particularly in the context of rapid and real-time planning and execution of omnidirectional jump trajectories, presents significant challenges due to the complex dynamics involved, especially when considering significant impulse contacts. This paper…

Cited by 0SourceScholar
2024

Adaptive Model Predictive Control with Data-driven Error Model for Quadrupedal Locomotion

ICRA 2024poster

Model Predictive Control (MPC) relies heavily on the robot model for its control law. However, a gap always exists between the reduced-order control model with uncertainties and the real robot, which degrades its performance. To address this issue, we propose the controller of integrating a data-dri…

Cited by 0SourceScholar
2023

Evolutionary-Based Online Motion Planning Framework for Quadruped Robot Jumping

IROS 2023poster

Offline evolutionary-based methodologies have supplied a successful motion planning framework for the quadrupedal jump. However, the time-consuming computation caused by massive population evolution in offline evolutionary-based jumping framework significantly limits the popularity in the quadrupeda…

Cited by 2SourceScholar
2022

An Optimal Motion Planning Framework for Quadruped Jumping

IROS 2022poster

This paper presents an optimal motion planning framework to generate versatile energy-optimal quadrupedal jumping motions automatically (e.g., flips, spin). The jumping motions via the centroidal dynamics are formulated as a 12-dimensional black-box optimization problem subject to the robot kino-dyn…

Cited by 23SourceScholar
2022

GenLoco: Generalized Locomotion Controllers for Quadrupedal Robots

CoRL 2022poster

Recent years have seen a surge in commercially-available and affordable quadrupedal robots, with many of these platforms being actively used in research and industry. As the availability of legged robots grows, so does the need for controllers that enable these robots to perform useful skills. Howev…

Cited by 70SourcecodeScholar
2019

Adaptive Vision-Based Control for Rope-Climbing Robot Manipulator

IROS 2019poster

While the mechanism of Rope-Climbing provides much flexibility, it opens up challenges to the development of the controller for Robotic Manipulator installed on Rope-Climbing robot(RCR), which is called Rope-Climbing Robot Manipulator(RCRM) here. In particular, the deformable nature of the rope resu…

Cited by 7SourceScholar
2019

Global Vision-Based Impedance Control for Robotic Wall Polishing

IROS 2019poster

Wall polishing is a typical and essential procedure in the interior renovation. However, such works are mainly carried out by humans, which have the disadvantages of low efficiency, inconsistent quality, and issues of safety and health. A new vision-based impedance controller is proposed for polishi…

Cited by 18SourceScholar