← Search

Yinian Mao

16 accepted papers

2025

MM-Geo: Multi-Scale and Multi-Positive UAV-View Geo-Localization

IROS 2025

UAV-view geo-localization is crucial in many applications, such as material transportation and security inspection, particularly in GPS-denied urban environments. However, most existing methods assume a known drone flight altitude and divide satellite maps into tiles that approximate the scale of dr

Cited by 0SourcecodeScholar
2025

Robust 4D Radar-Aided Inertial Navigation for Aerial Vehicles

ICRA 2025

While LiDAR and cameras are becoming ubiquitous for unmanned aerial vehicles (UAVs) but can be ineffective in challenging environments, 4D millimeter-wave (MMW) radars that can provide robust 3D ranging and Doppler velocity measurements are less exploited for aerial navigation. In this paper, we dev

Cited by 0SourceScholar
2025

Tactile sensing soft fingertip with dual air bag structure for an anthropomorphic robotic hand

IROS 2025

Tactile sensing plays a crucial role to empower robotic hands with improved grasping and manipulating abilities. In this paper, we propose an anthropomorphic robotic hand design with dual air bag sensors integrated soft fingertips to achieve tactile sensing. The air bag sensor is low-cost, easy-to-b

Cited by 0SourceScholar
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
2024

Multi-Fov-Constrained Trajectory Planning for Multirotor Safe Landing

IROS 2024poster

In recent years, multirotors have become more and more widely used, such as in aerial photography and delivery. Ensuring a safe landing in emergencies is the most basic requirement, and it is important to make full use of all the sensors of the multirotor. To improve the safety of UAV landing in unk…

Cited by 0SourceScholar
2024

Square-Root Inverse Filter-based GNSS-Visual-Inertial Navigation

ICRA 2024poster

While Global Navigation Satellite System (GNSS) is often used to provide global positioning if available, its intermittency and/or inaccuracy calls for fusion with other sensors. In this paper, we develop a novel GNSS-Visual-Inertial Navigation System (GVINS) that fuses visual, inertial, and raw GNS…

Cited by 0SourceScholar
2023

Efficient Bundle Adjustment for Coplanar Points and Lines

ICRA 2023poster

Bundle adjustment (BA) is a well-studied fundamental problem in the robotics and vision community. In man-made environments, coplanar points and lines are ubiquitous. However, the number of works on bundle adjustment with coplanar points and lines is relatively small. This paper focuses on this spec…

Cited by 2SourceScholar
2023

Efficient Visual-Inertial Navigation with Point-Plane Map

ICRA 2023poster

Accurate and real-time global pose estimation relative to a global prior map is indispensable in many applications, such as logistics with micro aerial vehicles and Augmented Reality. Supposed that a pure sparse 3D point map can provide a structureless representation of the environment, then generat…

Cited by 5SourceScholar
2022

$\mathcal {PLC}$-LiSLAM: LiDAR SLAM With Planes, Lines, and Cylinders

RA-L 2022

Planes, lines, and cylinders widely exist in man-made environments. This letter introduces a LiDAR simultaneous localization and mapping (SLAM) system using those three types of landmarks. Our algorithm has three components including local mapping, global mapping, and localization. The local and glo

Cited by 40SourceScholar
2022

1D-LRF Aided Visual-Inertial Odometry for High-Altitude MAV Flight

ICRA 2022poster

This paper addresses the problem of visual-inertial odometry (VIO) with a downward facing monocular camera when a micro aerial vehicle (MAV) flying at high altitude (over 100 meters). It is important to note that large scene depth causes visual motion constraints significantly less informative than…

Cited by 10SourceScholar
2022

Uncertainty Quantification in Depth Estimation via Constrained Ordinal Regression

ECCV 2022poster

"Monocular Depth Estimation (MDE) is a task to predict a dense depth map from a single image. Despite the recent progress brought by deep learning, existing methods are still prone to errors due to the ill-posed nature of MDE. Hence depth estimation systems must be self-aware of possible mistakes to…

2021

Understanding and Improving Early Stopping for Learning with Noisy Labels

NeurIPS 2021poster

The memorization effect of deep neural network (DNN) plays a pivotal role in many state-of-the-art label-noise learning methods. To exploit this property, the early stopping trick, which stops the optimization at the early stage of training, is usually adopted. Current methods generally decide the…