TrackPose

Author:

He Ke1ORCID,Li Chentao1ORCID,Duan Yongjie1ORCID,Feng Jianjiang1ORCID,Zhou Jie1ORCID

Affiliation:

1. Department of Automation, BNRist, Tsinghua University, Beijing, China

Abstract

Several studies have explored the estimation of finger pose/angle to enhance the expressiveness of touchscreens. However, the accuracy of previous algorithms is limited by large estimation errors, and the sequential output angles are unstable, making it difficult to meet the demands of practical applications. We believe the defect arises from improper rotation representation, the lack of time-series modeling, and the difficulty in accommodating individual differences among users. To address these issues, we conduct in-depth study of rotation representation for the 2D pose problem by minimizing the errors between representation space and original space. A deep learning model, TrackPose, using a self-attention mechanism is proposed for time-series modeling to improve accuracy and stability of finger pose. A registration application on a mobile phone is developed to collect touchscreen images of each new user without the use of optical tracking device. The combination of the three measures mentioned above has resulted in a 33% reduction in the angle estimation error, 47% for the yaw angle especially. Additionally, the instability of sequential estimations, measured by the proposed metric MAEΔ, is reduced by 62%. User study further confirms the effectiveness of our proposed algorithm.

Funder

National Natural Science Foundation of China

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Hardware and Architecture,Human-Computer Interaction

Reference40 articles.

1. TouchPose: Hand Pose Prediction, Depth Estimation, and Touch Classification from Capacitive Images

2. Anil Ufuk Batmaz, Mohammad Rajabi Seraji, Johanna Kneifel, and Wolfgang Stuerzlinger. 2020. No jitter please: Effects of rotational and positional jitter on 3D mid-air interaction. In Proceedings of the Future Technologies Conference. Springer, 792--808.

3. The Effect of Rotational Jitter on 3D Pointing Tasks

4. Force Touch Detection on Capacitive Sensors using Deep Neural Networks

5. The fat thumb

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