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Qiuguo Zhu

12 accepted papers

2026

Look Forward to Walk Backward: Efficient Terrain Memory for Backward Locomotion with Forward Vision

ICRA 2026poster

Legged robots with egocentric forward-facing depth cameras can couple exteroception and proprioception to achieve robust forward agility on complex terrain. When these robots walk backward, the forward-only field of view provides no preview. Purely proprioceptive controllers can remain stable on mod…

2026

START: Traversing Sparse Footholds With Terrain Reconstruction

RA-L 2026

Traversing terrains with sparse footholds like legged animals presents a promising yet challenging task for quadruped robots, as it requires precise environmental perception and agile control to secure safe foot placement while maintaining dynamic stability. Model-based hierarchical controllers exce

Cited by 3SourceScholar
2026

START: Traversing Sparse Footholds with Terrain Reconstruction

ICRA 2026poster

Traversing terrains with sparse footholds like legged animals presents a promising yet challenging task for quadruped robots, as it requires precise environmental perception and agile control to secure safe foot placement while maintaining dynamic stability. Model-based hierarchical controllers exce…

2025

MOVE: Multi-Skill Omnidirectional Legged Locomotion With Limited View in 3D Environments

ICRA 2025

Legged robots possess inherent advantages in traversing complex 3D terrains. However, previous work on lowcost quadruped robots with egocentric vision systems has been limited by a narrow front-facing view and exteroceptive noise, restricting omnidirectional mobility in such environments. While buil

Cited by 7SourceScholar
2025

Multi-Agent Path Finding With Heterogeneous Geometric and Kinematic Constraints in Continuous Space

RA-L 2025

Multi-Agent Path Finding (MAPF) represents a pivotal area of research within multi-agent systems. Existing algorithms typically discretize the movement space of agents into grid or topology, neglecting agents' geometric characteristics and kinematic constraints. This limitation hampers their applica

Cited by 8SourceScholar
2024

Decentralized Communication-Maintained Coordination for Multi-Robot Exploration: Achieving Connectivity and Adaptability

IROS 2024poster

The realm of multi-robot autonomous exploration tasks underscores the critical role of communication in coordinating group activities. This paper introduces an innovative decentralized multi-robot exploration algorithm, meticulously crafted to ensure unbroken communication within robotic groups, a c…

Cited by 1SourceScholar
2024

PIE: Parkour With Implicit-Explicit Learning Framework for Legged Robots

RA-L 2024

Parkour presents a highly challenging task for legged robots, requiring them to traverse various terrains with agile and smooth locomotion. This necessitates comprehensive understanding of both the robot's own state and the surrounding terrain, despite the inherent unreliability of robot perception

Cited by 49SourceScholar
2024

Toward Understanding Key Estimation in Learning Robust Humanoid Locomotion

IROS 2024poster

Accurate state estimation plays a critical role in ensuring the robust control of humanoid robots, particularly in the context of learning-based control policies for legged robots. However, there is a notable gap in analytical research concerning estimations. Therefore, we endeavor to further unders…

Cited by 6SourceScholar
2022

Vision-Assisted Localization and Terrain Reconstruction with Quadruped Robots

IROS 2022poster

Legged robots, specifically quadruped robots, have good locomotion performance in complex and rugged terrain and are becoming widely used in field exploration and rescue missions. To achieve full autonomy in such scenarios, robots need not only accurate localization but also an accurate understandin…

Cited by 8SourceScholar
2020

Learning-based Optimization Algorithms Combining Force Control Strategies for Peg-in-Hole Assembly

IROS 2020poster

In this paper, an approach for automatic peg-in-hole assembly is proposed. The task is divided into two main steps: searching phase and inserting phase. First, a multilayer perceptron network is designed to address the hole search problem and a hybrid force position controller is introduced to ensur…

Cited by 34SourceScholar
2015

Active control of under-actuated foot tilting for humanoid push recovery

IROS 2015poster

We propose a novel control framework to demonstrate a unique foot tilting maneuver based on ankle torque control for humanoid balance recovery. The framework consists of the variable impedance regulation at the center of mass of the robot based on the ankle torque control, the virtual stoppers to pr…

Cited by 11SourceScholar