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Junyi Geng

17 accepted papers

2026

A Self-Supervised Learning Approach with Differentiable Optimization for UAV Trajectory Planning

ICRA 2026poster

While Unmanned Aerial Vehicles (UAVs) have gained significant traction across various fields, path planning in 3D environments remains a critical challenge, particularly under size, weight, and power (SWAP) constraints. Traditional modular planning systems often introduce latency and suboptimal perf…

2026

Aerial Manipulation with Contact-Aware Onboard Perception and Hybrid Control

ICRA 2026poster

Aerial manipulation (AM) promises to move Unmanned Aerial Vehicles (UAVs) beyond passive inspection to contact-rich tasks such as grasping, assembly, and in-situ maintenance. Most prior AM demonstrations rely on external motion capture (MoCap) and emphasize position control for coarse interactions, …

2026

AirIO: Learning Inertial Odometry with Enhanced IMU Feature Observability

ICRA 2026poster

Inertial odometry (IO) using only Inertial Measurement Units (IMUs) offers a lightweight and cost-effective solution for Unmanned Aerial Vehicle (UAV) applications, yet existing learning-based IO models often fail to generalize to UAVs due to the highly dynamic and non-linear-flight patterns that di…

2025

AirIO: Learning Inertial Odometry With Enhanced IMU Feature Observability

RA-L 2025

Inertial odometry (IO) using only Inertial Measurement Units (IMUs) offers a lightweight and cost-effective solution for Unmanned Aerial Vehicle (UAV) applications, yet existing learning-based IO models often fail to generalize to UAVs due to the highly dynamic and non-linear-flight patterns that di

Cited by 22SourceScholar
2025

Flying Hand: End-Effector-Centric Framework for Versatile Aerial Manipulation Teleoperation and Policy Learning

RSS 2025poster

Aerial manipulation has recently attracted increasing interest from both industry and academia. Previous approaches have demonstrated success in various specific tasks. However, their hardware design and control frameworks are often tightly coupled with particular tasks, limiting the development of…

Cited by 1PDFScholar
2025

iKap: Kinematics-Aware Planning with Imperative Learning

ICRA 2025

Trajectory planning in robotics aims to generate collision-free pose sequences that can be reliably executed. Recently, vision-to-planning systems have gained increasing attention for their efficiency and ability to interpret and adapt to surrounding environments. However, traditional modular system

Cited by 5SourceScholar
2024

Aerial Interaction with Tactile Sensing

ICRA 2024poster

While the field of autonomous Uncrewed Aerial Vehicles (UAVs) has grown rapidly, most applications only focus on passive visual tasks. Aerial interaction aims to execute tasks involving physical interactions, which offers a way to assist humans in high-altitude and high-risk operations. Tactile sens…

Cited by 15SourceScholar
2024

Flying Calligrapher: Contact-Aware Motion and Force Planning and Control for Aerial Manipulation

RA-L 2024

Aerial manipulation has gained interest in completing high-altitude tasks that are challenging for human workers, such as contact inspection and defect detection, etc. Previous research has focused on maintaining static contact points or forces. This letter addresses a more general and dynamic task:

Cited by 22SourceScholar
2023

Hierarchical Intention Tracking for Robust Human-Robot Collaboration in Industrial Assembly Tasks

ICRA 2023poster

Collaborative robots require effective human intention estimation to safely and smoothly work with humans in less structured tasks such as industrial assembly, where human intention continuously changes. We propose the concept of intention tracking and introduce a collaborative robot system that con…

Cited by 16SourceScholar
2023

Image-Based Visual Servo Control for Aerial Manipulation Using a Fully-Actuated UAV

IROS 2023poster

Using Unmanned Aerial Vehicles (UAVs) to per-form high-altitude manipulation tasks beyond just passive visual application can reduce the time, cost, and risk of human workers. Prior research on aerial manipulation has relied on either ground truth state estimate or GPS/total station with some Simult…

Cited by 15SourceScholar
2023

Intention Aware Robot Crowd Navigation with Attention-Based Interaction Graph

ICRA 2023poster

We study the problem of safe and intention-aware robot navigation in dense and interactive crowds. Most previous reinforcement learning (RL) based methods fail to consider different types of interactions among all agents or ignore the intentions of people, which results in performance degradation. I…

Cited by 92SourceScholar
2023

Off-Policy Evaluation With Online Adaptation for Robot Exploration in Challenging Environments

RA-L 2023

Autonomous exploration has many important applications. However, classic information gain-based or frontier-based exploration only relies on the robot current state to determine the immediate exploration goal, which lacks the capability of predicting the value of future states and thus leads to inef

Cited by 18SourceScholar
2023

PyPose: A Library for Robot Learning With Physics-Based Optimization

CVPR 2023poster

Deep learning has had remarkable success in robotic perception, but its data-centric nature suffers when it comes to generalizing to ever-changing environments. By contrast, physics-based optimization generalizes better, but it does not perform as well in complicated tasks due to the lack of high-le…

2022

Design, Modeling and Control for a Tilt-rotor VTOL UAV in the Presence of Actuator Failure

IROS 2022poster

Enabling vertical take-off and landing while pro-viding the ability to fly long ranges opens the door to a wide range of new real-world aircraft applications while improving many existing tasks. Tiltrotor vertical take-off and landing (VTOL) unmanned aerial vehicles (UAVs) are a better choice than f…

Cited by 37SourceScholar
2022

Robotic Depowdering for Additive Manufacturing Via Pose Tracking

RA-L 2022

With the rapid development of powder-based additive manufacturing, depowdering, a process of removing unfused powder that covers 3D-printed parts, has become a major bottleneck to further improve its productiveness. Traditional manual depowdering is extremely time-consuming and costly, and some prio

Cited by 7SourcecodeScholar
2022

iCaps: Iterative Category-Level Object Pose and Shape Estimation

RA-L 2022

This letter proposes a category-level 6D object pose and shape estimation approach iCaps, which allows tracking 6D poses of unseen objects in a category and estimating their 3D shapes. We develop a category-level auto-encoder network using depth images as input, where feature embeddings from the aut

Cited by 45SourcecodeScholar
2020

Bio-inspired Inverted Landing Strategy in a Small Aerial Robot Using Policy Gradient

IROS 2020poster

Landing upside down on a ceiling is challenging as it requires a flier to invert its body and land against the gravity, a process that demands a stringent spatiotemporal coordination of body translational and rotational motion. Although such an aerobatic feat is routinely performed by biological fli…

Cited by 7SourceScholar