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Hongkai Ye

7 accepted papers

2024

Flexible and Topological Consistent Local Replanning for Multirotors

IROS 2024poster

In many situations such as city delivery and wild inspection, quadrotors are often required to follow a predefined reference trajectory. However, these reference trajectories cannot be perfectly safe, resulting in conflicts between tracking the reference precisely, flying safely, and finishing the m…

Cited by 1SourceScholar
2022

Efficient Sampling-based Multirotors Kinodynamic Planning with Fast Regional Optimization and Post Refining

IROS 2022poster

For real-time multirotor kinodynamic planning, the efficiency of sampling-based methods is usually hindered by difficult-to-sample homotopy classes like narrow passages. In this paper, we address this issue by a hybrid scheme. We firstly propose a fast regional optimizer exploiting the information o…

Cited by 9SourceScholar
2021

EGO-Planner: An ESDF-Free Gradient-Based Local Planner for Quadrotors

RA-L 2021

Gradient-based planners are widely used for quadrotor local planning, in which a Euclidean Signed Distance Field (ESDF) is crucial for evaluating gradient magnitude and direction. Nevertheless, computing such a field has much redundancy since the trajectory optimization procedure only covers a very

Cited by 455SourcecodeScholar
2021

Generating Large-Scale Trajectories Efficiently using Double Descriptions of Polynomials

ICRA 2021poster

For quadrotor trajectory planning, describing a polynomial trajectory through coefficients and end-derivatives both enjoy their own convenience in energy minimization. We name them double descriptions of polynomial trajectories. The transformation between them, causing most of the inefficiency and i…

Cited by 38SourcecodeScholar
2021

Learning-based 3D Occupancy Prediction for Autonomous Navigation in Occluded Environments

IROS 2021poster

In autonomous navigation, sensors suffer from massive occlusion in cluttered environments, leaving a significant amount of space unknown. In practice, treating the unknown space in optimistic or pessimistic ways both set limitations on planning performance. Therefore, aggressiveness and safety canno…

Cited by 39SourcecodeScholar
2021

TGK-Planner: An Efficient Topology Guided Kinodynamic Planner for Autonomous Quadrotors

RA-L 2021

In this letter, we propose a lightweight yet effective Topology Guided Kinodynamic planner (TGK-Planner) for quadrotor aggressive flights with limited onboard computing resources. The proposed system follows the traditional hierarchical planning workflow, with novel designs to improve the robustness

Cited by 38SourcecodeScholar