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Boyu Zhou

32 accepted papers

2026

ApexNav: An Adaptive Exploration Strategy for Zero-Shot Object Navigation with Target-Centric Semantic Fusion

ICRA 2026poster

Navigating unknown environments to find a target object is a significant challenge. While semantic information is crucial for navigation, relying solely on it for decision-making may not always be efficient, especially in environments with weak semantic cues. Additionally, many methods are susceptib…

2026

D²-VPR: A Parameter-efficient Visual-foundation-model-based Visual Place Recognition Method via Knowledge Distillation and Deformable Aggregation

AAAI 2026technical

Visual Place Recognition (VPR) aims to determine the geographic location of a query image by retrieving its most visually similar counterpart from a geo-tagged reference database. Recently, the emergence of the powerful visual foundation model, DINOv2, trained in a self-supervised manner on massive

Cited by 0SourcePDFScholar
2026

GUIDE: A Diffusion-Based Autonomous Robot Exploration Framework Using Global Graph Inference

ICRA 2026poster

Autonomous exploration in structured and complex indoor environments remains a challenging task, as existing methods often struggle to appropriately model unobserved space and plan globally efficient paths. To address these limitations, we propose GUIDE, a novel exploration framework that synergisti…

2025

ApexNAV: An Adaptive Exploration Strategy for Zero-Shot Object Navigation With Target-Centric Semantic Fusion

RA-L 2025

Navigating unknown environments to find a target object is a significant challenge. While semantic information is crucial for navigation, relying solely on it for decision-making may not always be efficient, especially in environments with weak semantic cues. Additionally, many methods are susceptib

Cited by 24SourceScholar
2025

DynamicPose: Real-time and Robust 6D Object Pose Tracking for Fast-Moving Cameras and Objects

IROS 2025

We present DynamicPose, a retraining-free 6D pose tracking framework that improves tracking robustness in fast-moving camera and object scenarios. Previous work is mainly applicable to static or quasi-static scenes, and its performance significantly deteriorates when both the object and the camera m

Cited by 3SourceScholar
2025

EPIC: A Lightweight LiDAR-Based AAV Exploration Framework for Large-Scale Scenarios

RA-L 2025

Autonomous exploration is a fundamental problem for various applications of autonomous aerial vehicles (AAVs). Recently, LiDAR-based exploration has gained significant attention due to its ability to generate high-precision point cloud maps of large-scale environments. While the point clouds are inh

Cited by 16SourceScholar
2025

FERMI: Flexible Radio Mapping with a Hybrid Propagation Model and Scalable Autonomous Data Collection

RSS 2025poster

Communication is fundamental for multi-robot collaboration, with accurate radio mapping playing a crucial role in predicting signal strength between robots. However, modeling radio signal propagation in large and occluded environments is challenging due to complex interactions between signals and ob…

Cited by 0PDFScholar
2025

Local Reactive Control for Mobile Manipulators With Whole-Body Safety in Complex Environments

RA-L 2025

Mobile manipulators typically encounter significant challenges in navigating narrow, cluttered environments due to their high-dimensional state spaces and complex kinematics. While reactive methods excel in dynamic settings, they struggle to efficiently incorporate complex, coupled constraints acros

Cited by 5SourceScholar
2025

Perception-aware Planning for Quadrotor Flight in Unknown and Feature-limited Environments

IROS 2025

Various studies on perception-aware planning have been proposed to enhance the state estimation accuracy of quadrotors in visually degraded environments. However, many existing methods heavily rely on prior environmental knowledge and face significant limitations in previously unknown environments w

Cited by 4SourceScholar
2024

APACE: Agile and Perception-aware Trajectory Generation for Quadrotor Flights

ICRA 2024poster

Various perception-aware planning approaches have attempted to enhance the state estimation accuracy during maneuvers, while the feature matchability among frames, a crucial factor influencing estimation accuracy, has often been overlooked. In this paper, we present APACE, an Agile and Perception-Aw…

Cited by 7SourcecodeScholar
2024

FC-Planner: A Skeleton-guided Planning Framework for Fast Aerial Coverage of Complex 3D Scenes

ICRA 2024poster

3D coverage path planning for UAVs is a crucial problem in diverse practical applications. However, existing methods have shown unsatisfactory system simplicity, computation efficiency, and path quality in large and complex scenes. To address these challenges, we propose FC-Planner, a skeleton-guide…

Cited by 12SourcecodeScholar
2024

H3-Mapping: Quasi-Heterogeneous Feature Grids for Real-Time Dense Mapping Using Hierarchical Hybrid Representation

RA-L 2024

In recent years, implicit online dense mapping methods have achieved high-quality reconstruction results, showcasing great potential in robotics, AR/VR, and digital twins applications. However, existing methods struggle with slow texture modeling which limits their real-time performance. To address

Cited by 5SourcecodeScholar
2024

Real-time Whole-body Motion Planning for Mobile Manipulators Using Environment-adaptive Search and Spatial-temporal Optimization

ICRA 2024poster

Mobile manipulators have recently gained significant attention in the robotics community due to their superior potential in industrial and service applications. However, the high degree of freedom associated with mobile manipulators poses challenges in achieving real-time whole-body motion planning.…

Cited by 3SourceScholar
2024

SOAR: Simultaneous Exploration and Photographing with Heterogeneous UAVs for Fast Autonomous Reconstruction

IROS 2024poster

Unmanned Aerial Vehicles (UAVs) have gained significant popularity in scene reconstruction. This paper presents SOAR, a LiDAR-Visual heterogeneous multi-UAV system specifically designed for fast autonomous reconstruction of complex environments. Our system comprises a LiDAR-equipped explorer with a…

Cited by 3SourcecodeScholar
2024

Star-Searcher: A Complete and Efficient Aerial System for Autonomous Target Search in Complex Unknown Environments

RA-L 2024

This paper tackles the challenge of autonomous target search using unmanned aerial vehicles (UAVs) in complex unknown environments. To fill the gap in systematic approaches for this task, we introduce Star-Searcher, an aerial system featuring specialized sensor suites, mapping, and planning modules

Cited by 36SourcecodeScholar
2023

AutoTrans: A Complete Planning and Control Framework for Autonomous UAV Payload Transportation

RA-L 2023

The robotics community is increasingly interested in autonomous aerial transportation. Unmanned aerial vehicles with suspended payloads have advantages over other systems, including mechanical simplicity and agility, but pose great challenges in planning and control. To realize fully autonomous aeri

Cited by 47SourceScholar
2023

FAEL: Fast Autonomous Exploration for Large-scale Environments With a Mobile Robot

RA-L 2023

Autonomous exploration in large-scale and complex environments is a challenging task. As the size of the environment increases, the significant overhead of exploration algorithms could overwhelm the computational capability of mobile platforms, prohibiting timely response to environmental changes. M

Cited by 80SourceScholar
2023

H$_{2}$-Mapping: Real-Time Dense Mapping Using Hierarchical Hybrid Representation

RA-L 2023

Constructing a high-quality dense map in real-time is essential for robotics, AR/VR, and digital twins applications. As Neural Radiance Field (NeRF) greatly improves the mapping performance, in this letter, we propose a NeRF-based mapping method that enables higher-quality reconstruction and real-ti

Cited by 52SourcecodeScholar
2023

MacFormer: Map-Agent Coupled Transformer for Real-Time and Robust Trajectory Prediction

RA-L 2023

Predicting the future behavior of agents is a fundamental task in autonomous vehicle domains. Accurate prediction relies on comprehending the surrounding map, which significantly regularizes agent behaviors. However, existing methods have limitations in exploiting the map and exhibit a strong depend

Cited by 79SourceScholar
2023

PredRecon: A Prediction-boosted Planning Framework for Fast and High-quality Autonomous Aerial Reconstruction

ICRA 2023poster

Autonomous UAV path planning for 3D reconstruction has been actively studied in various applications for high-quality 3D models. However, most existing works have adopted explore-then-exploit, prior-based or exploration-based strategies, demonstrating inefficiency with repeated flight and low autono…

Cited by 25SourcecodeScholar
2023

RELINK: Real-Time Line-of-Sight-Based Deployment Framework of Multi-Robot for Maintaining a Communication Network

RA-L 2023

In this letter, we study the problem of using mobile robots as relay nodes to keep moving clients and a fixed base station connected. Some applications, such as exploration and rescue, require this problem to be solved. However, existing methods are computationally time-consuming and insufficient to

Cited by 9SourceScholar
2022

Exploration with Global Consistency Using Real-Time Re-integration and Active Loop Closure

ICRA 2022poster

Despite recent progress of robotic exploration, most methods assume that drift-free localization is available, which is problematic in reality and causes severe distortion of the reconstructed map. In this work, we present a systematic exploration mapping and planning framework that deals with drift…

Cited by 10SourceScholar
2022

Fast 3D Sparse Topological Skeleton Graph Generation for Mobile Robot Global Planning

IROS 2022poster

In recent years, mobile robots are becoming ambitious and deployed in large-scale scenarios. Serving as a high-level understanding of environments, a sparse skeleton graph is beneficial for more efficient global planning. Currently, existing solutions for skeleton graph generation suffer from severa…

Cited by 17SourceScholar
2021

Estimation and Adaption of Indoor Ego Airflow Disturbance with Application to Quadrotor Trajectory Planning

ICRA 2021poster

It is ubiquitously accepted that during the autonomous navigation of the quadrotors, one of the most widely adopted unmanned aerial vehicles (UAVs), safety always has the highest priority. However, it is observed that the ego airflow disturbance can be a significant adverse factor during flights, ca…

Cited by 9SourceScholar
2021

FUEL: Fast UAV Exploration Using Incremental Frontier Structure and Hierarchical Planning

RA-L 2021

Autonomous exploration is a fundamental problem for various applications of unmanned aerial vehicles(UAVs). Existing methods, however, were demonstrated to insufficient exploration rate, due to the lack of efficient global coverage, conservative motion plans and low decision frequencies. In this let

Cited by 313SourcecodeScholar
2020

Robust Real-time UAV Replanning Using Guided Gradient-based Optimization and Topological Paths

ICRA 2020poster

Gradient-based trajectory optimization (GTO) has gained wide popularity for quadrotor trajectory replanning. However, it suffers from local minima, which is not only fatal to safety but also unfavorable for smooth navigation. In this paper, we propose a replanning method based on GTO addressing this…

Cited by 156SourceScholar
2019

FIESTA: Fast Incremental Euclidean Distance Fields for Online Motion Planning of Aerial Robots

IROS 2019poster

Euclidean Signed Distance Field (ESDF) is useful for online motion planning of aerial robots since it can easily query the distance and gradient information against obstacles. Fast incrementally built ESDF map is the bottleneck for conducting real-time motion planning. In this paper, we investigate…

Cited by 241SourcecodeScholar
2019

Optimal Trajectory Generation for Quadrotor Teach-and-Repeat

RA-L 2019

In this letter, we propose a novel motion planning framework for quadrotor teach-and-repeat applications. Instead of controlling the drone to precisely follow the teaching path, our method converts an arbitrary jerky human-piloted trajectory to a topologically equivalent one, which is guaranteed to

Cited by 22SourceScholar
2019

Robust and Efficient Quadrotor Trajectory Generation for Fast Autonomous Flight

RA-L 2019

In this letter, we propose a robust and efficient quadrotor motion planning system for fast flight in three-dimensional complex environments. We adopt a kinodynamic path searching method to find a safe, kinodynamic feasible, and minimum-time initial trajectory in the discretized control space. We im

Cited by 547SourceScholar