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Kejie Qiu

8 accepted papers

2026

Large Depth Completion Model from Sparse Observations

ICLR 2026poster

This work presents the Large Depth Completion Model (LDCM), a simple, effective, and robust framework for single-view metric depth estimation with sparse observations. Without relying on complex architectural designs, LDCM generates metric-accurate dense depth maps in one large transformer. It outpe…

Cited by 0SourceScholar
2025

LHM: Large Animatable Human Reconstruction Model for Single Image to 3D in Seconds

ICCV 2025poster

Animatable 3D human reconstruction from a single image is a challenging problem due to the ambiguity in decoupling geometry, appearance, and deformation. Recent advances in 3D human reconstruction mainly focus on static human modeling, and the reliance of using synthetic 3D scans for training limits…

2020

Decentralized Visual-Inertial-UWB Fusion for Relative State Estimation of Aerial Swarm

ICRA 2020poster

The collaboration of unmanned aerial vehicles (UAVs) has become a popular research topic for its practicability in multiple scenarios. The collaboration of multiple UAVs, which is also known as aerial swarm is a highly complex system, which still lacks a state-of-art decentralized relative state est…

Cited by 161SourceScholar
2018

Estimating Metric Poses of Dynamic Objects Using Monocular Visual-Inertial Fusion

IROS 2018poster

A monocular 3D object tracking system generally has only up-to-scale pose estimation results without any prior knowledge of the tracked object. In this paper, we propose a novel idea to recover the metric scale of an arbitrary dynamic object by optimizing the trajectory of the objects in the world f…

Cited by 9SourceScholar
2015

Asynchronous blind signal decomposition using tiny-length code for Visible Light Communication-based indoor localization

ICRA 2015poster

Indoor localization is a fundamental capability for service robots and indoor applications on mobile devices. To realize that, the cost and performance are of great concern. In this paper, we introduce a lightweight signal encoding and decomposition method for a low-cost and low-power Visible Light…

Cited by 10SourceScholar