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Weijia Yao

8 accepted papers

2026

Concurrent-Allocation Task Execution for Multi-Robot Path-Crossing-Minimal Navigation in Obstacle Environments

ICRA 2026poster

In this paper, the concurrent-allocation task execution (CATE) algorithm is presented to address this problem (i.e., MPCM navigation in obstacle environments). First, the path-crossing-related elements in terms of (i) robot allocation, (ii) desired-point convergence, and (iii) collision and obstacle…

2026

Simultaneous Arrival Control for Distributed Multi-Robot Systems with Curvature and Constant-Speed Constraints

ICRA 2026poster

The simultaneous arrival of multiple mobile robots at their respective target points is crucial for cooperative tasks such as encirclement, interception, and disaster relief. Although the problem of simultaneous arrival is inherently complex, it becomes even more challenging in multi-robot systems w…

Cited by 0Scholar
2025

DVRP-MHSI: Dynamic Visualization Research Platform for Multimodal Human-Swarm Interaction

RA-L 2025

In recent years, there has been a significant amount of research on algorithms and control methods for distributed collaborative robots. However, the emergence of collective behavior in a swarm is still difficult to predict and control. Nevertheless, human interaction with the swarm helps render the

Cited by 4SourcecodeScholar
2025

Finite-time Guiding Vector Fields for Accelerated Path Following of Nonholonomic Robots

IROS 2025

Guiding vector fields (GVFs) have been widely applied in robotic path-following control. However, most, if not all, of the existing studies derive control algorithms that only render the path-following error asymptotically converging to zero, while more stringent time constraints on the path-followi

Cited by 0SourceScholar
2025

Inverse Kinematics on Guiding Vector Fields for Robot Path Following

ICRA 2025

Inverse kinematics is a fundamental technique for motion and positioning control in robotics, typically applied to end-effectors. In this paper, we extend the concept of inverse kinematics to guiding vector fields for path following in autonomous mobile robots. The desired path is defined by its imp

Cited by 4SourcecodeScholar
2025

Versatile Distributed Maneuvering With Generalized Formations Using Guiding Vector Fields

ICRA 2025

This paper presents a unified approach to realize versatile distributed maneuvering with generalized formations. Specifically, we decompose the robots' maneuvers into two independent components, i.e., interception and enclosing, which are parameterized by two independent virtual coordinates. Treatin

Cited by 0SourceScholar
2024

Learning-Based Near-Optimal Motion Planning for Intelligent Vehicles With Uncertain Dynamics

RA-L 2024

Motion planning has been an important research topic in achieving safe and flexible maneuvers for intelligent vehicles. However, it remains challenging to realize efficient and optimal planning in the presence of uncertain model dynamics. In this paper, a sparse kernel-based reinforcement learning (

Cited by 6SourceScholar
2021

Distributed coordinated path following using guiding vector fields

ICRA 2021poster

It is essential in many applications to impose a scalable coordinated motion control on a large group of mobile robots, which is efficient in tasks requiring repetitive execution, such as environmental monitoring. In this paper, we design a guiding vector field to guide multiple robots to follow pos…

Cited by 23SourceScholar