ReliaAvatar: A Robust Real-Time Avatar Animator with Integrated Motion Prediction

Fuente: arXiv
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Hauptverfasser: Qian, Bo, Wei, Zhenhuan, Li, Jiashuo, Wei, Xing
Format: Preprint
Veröffentlicht: 2024
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author Qian, Bo
Wei, Zhenhuan
Li, Jiashuo
Wei, Xing
author_facet Qian, Bo
Wei, Zhenhuan
Li, Jiashuo
Wei, Xing
contents Efficiently estimating the full-body pose with minimal wearable devices presents a worthwhile research direction. Despite significant advancements in this field, most current research neglects to explore full-body avatar estimation under low-quality signal conditions, which is prevalent in practical usage. To bridge this gap, we summarize three scenarios that may be encountered in real-world applications: standard scenario, instantaneous data-loss scenario, and prolonged data-loss scenario, and propose a new evaluation benchmark. The solution we propose to address data-loss scenarios is integrating the full-body avatar pose estimation problem with motion prediction. Specifically, we present \textit{ReliaAvatar}, a real-time, \textbf{relia}ble \textbf{avatar} animator equipped with predictive modeling capabilities employing a dual-path architecture. ReliaAvatar operates effectively, with an impressive performance rate of 109 frames per second (fps). Extensive comparative evaluations on widely recognized benchmark datasets demonstrate Relia\-Avatar's superior performance in both standard and low data-quality conditions. The code is available at \url{https://github.com/MIV-XJTU/ReliaAvatar}.
format Preprint
id arxiv_https___arxiv_org_abs_2407_02129
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle ReliaAvatar: A Robust Real-Time Avatar Animator with Integrated Motion Prediction
Qian, Bo
Wei, Zhenhuan
Li, Jiashuo
Wei, Xing
Human-Computer Interaction
Efficiently estimating the full-body pose with minimal wearable devices presents a worthwhile research direction. Despite significant advancements in this field, most current research neglects to explore full-body avatar estimation under low-quality signal conditions, which is prevalent in practical usage. To bridge this gap, we summarize three scenarios that may be encountered in real-world applications: standard scenario, instantaneous data-loss scenario, and prolonged data-loss scenario, and propose a new evaluation benchmark. The solution we propose to address data-loss scenarios is integrating the full-body avatar pose estimation problem with motion prediction. Specifically, we present \textit{ReliaAvatar}, a real-time, \textbf{relia}ble \textbf{avatar} animator equipped with predictive modeling capabilities employing a dual-path architecture. ReliaAvatar operates effectively, with an impressive performance rate of 109 frames per second (fps). Extensive comparative evaluations on widely recognized benchmark datasets demonstrate Relia\-Avatar's superior performance in both standard and low data-quality conditions. The code is available at \url{https://github.com/MIV-XJTU/ReliaAvatar}.
title ReliaAvatar: A Robust Real-Time Avatar Animator with Integrated Motion Prediction
topic Human-Computer Interaction
url https://arxiv.org/abs/2407.02129