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Zhiqiang Jiang

5 accepted papers

2024

SACNet: A Scattered Attention-Based Network With Feature Compensator for Visual Localization

RA-L 2024

Visual localization, an integral component of a vast array of computer applications, has been effectively resolved by scene coordinate regression (SCoRe) methods. However, due to the limited receptive field of convolutional neural networks (CNNs), current SCoRe methods have difficulty in distinguish

Cited by 4SourceScholar
2023

EAAINet: An Element-Wise Attention Network With Global Affinity Information for Accurate Indoor Visual Localization

RA-L 2023

Visual localization, a vital component of many visual applications, has been tackled by scene coordinates regression (SCoRe) methods that leverage neural networks to predict scene coordinates, followed by a PnP algorithm to recover camera pose. However, these methods do not consider the relationship

Cited by 19SourceScholar
2023

OFVL-MS: Once for Visual Localization across Multiple Indoor Scenes

ICCV 2023poster

In this work, we seek to predict camera poses across scenes with a multi-task learning manner, where we view the localization of each scene as a new task. We propose OFVL-MS, a unified framework that dispenses with the traditional practice of training a model for each individual scene and relieves…

Cited by 11PDFcodeScholar
2023

Poly-MOT: A Polyhedral Framework For 3D Multi-Object Tracking

IROS 2023poster

3D Multi-object tracking (MOT) empowers mobile robots to accomplish well-informed motion planning and navigation tasks by providing motion trajectories of surrounding objects. However, existing 3D MOT methods typically employ a single similarity metric and physical model to perform data association…

Cited by 38SourcecodeScholar
2023

Poly-PC: A Polyhedral Network for Multiple Point Cloud Tasks at Once

CVPR 2023poster

In this work, we show that it is feasible to perform multiple tasks concurrently on point cloud with a straightforward yet effective multi-task network. Our framework, Poly-PC, tackles the inherent obstacles (e.g., different model architectures caused by task bias and conflicting gradients caused by…

Cited by 21SourcePDFScholar