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Xiaosa Li
ORCID
Publication Activity (10 Years)
Years Active: 2019-2024
Publications (10 Years): 11
Top Topics
Object Manipulation
Inertial Navigation
Real Estate Investment
Latent Space
Top Venues
CoRR
ICRA
IEEE Netw.
IEEE Robotics Autom. Lett.
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Publications
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Chenchang Li
,
Zihao Ai
,
Tong Wu
,
Xiaosa Li
,
Wenbo Ding
,
Huazhe Xu
DeformNet: Latent Space Modeling and Dynamics Prediction for Deformable Object Manipulation.
ICRA
(2024)
Xiaosa Li
,
Runze Zhao
,
Chengyue Lu
,
Xiao Xiao
,
Wenbo Ding
Point-Wise Vibration Pattern Production via a Sparse Actuator Array for Surface Tactile Feedback.
ICRA
(2024)
Xiaosa Li
,
Runze Zhao
,
Chengyue Lu
,
Xiao Xiao
,
Wenbo Ding
Point-Wise Vibration Pattern Production via a Sparse Actuator Array for Surface Tactile Feedback.
CoRR
(2024)
Chenchang Li
,
Zihao Ai
,
Tong Wu
,
Xiaosa Li
,
Wenbo Ding
,
Huazhe Xu
DeformNet: Latent Space Modeling and Dynamics Prediction for Deformable Object Manipulation.
CoRR
(2024)
Xiaosa Li
,
Chengyue Lu
,
Ziwu Song
,
Wenbo Ding
,
Xiao-Ping Zhang
Planar Magnetic Actuation for Soft and Rigid Robots Using a Scalable Electromagnet Array.
IEEE Robotics Autom. Lett.
7 (4) (2022)
Xiaosa Li
,
Zhiyong Yuan
,
Jianhui Zhao
,
Bo Du
,
Xiangyun Liao
,
Iztok Humar
Edge-Learning-Enabled Realistic Touch and Stable Communication for Remote Haptic Display.
IEEE Netw.
35 (1) (2021)
Xiaosa Li
,
Shuaiying Yuan
,
Zhiyong Yuan
Electromagnetic Vibration Tactile Feedback for Biological and Artificial Wave Signals.
UbiComp/ISWC Adjunct
(2021)
Xiaosa Li
,
Zhiyong Yuan
,
Jianhui Zhao
,
Xiangyun Liao
Dynamic and Accurate Force Feedback for Electromagnetic Haptic Display.
SmartIoT
(2020)
Junfeng Hu
,
Xiaosa Li
,
Yuru Xu
,
Shaowu Wu
,
Bin Zheng
Evaluation of company investment value based on machine learning.
CoRR
(2020)
Qianqian Tong
,
Xiaosa Li
,
Kai Lin
,
Zhiyong Yuan
Cascade LSTM Based Visual-Inertial Navigation for Magnetic Levitation Haptic Interaction.
CoRR
(2019)
Qianqian Tong
,
Xiaosa Li
,
Kai Lin
,
Caizi Li
,
Weixin Si
,
Zhiyong Yuan
Cascade-LSTM-Based Visual-Inertial Navigation for Magnetic Levitation Haptic Interaction.
IEEE Netw.
33 (3) (2019)