A large-area flexible tactile sensor for multi-touch and force detection using electrical impedance tomography H Chen, X Yang, P Wang, J Geng, G Ma, X Wang IEEE Sensors Journal 22 (7), 7119-7129, 2022 | 45 | 2022 |
A skin-like hydrogel for distributed force sensing using an electrical impedance tomography-based pseudo-array method H Chen, X Yang, J Geng, G Ma, X Wang ACS Applied Electronic Materials 5 (3), 1451-1460, 2023 | 7 | 2023 |
A convolutional neural network based electrical impedance tomography method for skin-like hydrogel sensing H Chen, X Yang, J Geng, G Ma, X Wang 2022 IEEE International Conference on Robotics and Biomimetics (ROBIO), 178-183, 2022 | 3 | 2022 |
Correcting non-uniform sensitivity in EIT tactile sensing via Jacobian vector approximation H Chen, X Yang, G Ma, X Wang IEEE Robotics and Automation Letters, 2024 | 2 | 2024 |
Real-time Monitoring Multi-phase Flow using Electrical Impedance Tomography X Yang, H Chen, G Ma, X Wang 2022 IEEE International Conference on Sensing, Diagnostics, Prognostics, and …, 2022 | 2 | 2022 |
A Two-Stage Imaging Framework Combining CNN and Physics-Informed Neural Networks for Full-Inverse Tomography: A Case Study in Electrical Impedance Tomography (EIT) X Yang, Y Zhang, H Chen, G Ma, X Wang arXiv preprint arXiv:2407.17721, 2024 | 1 | 2024 |
A Jacobian vector correction method for the force calibration of EIT-based tactile sensor H Chen, G Ma, X Wang Authorea Preprints, 2023 | | 2023 |
Real-time Monitoring of Two-phase Flow Using Electrical Impedance Tomography with Convolutional Neural Network X Yang, H Chen, G Xu, G Ma, X Wang 2023 IEEE International Conference on Real-time Computing and Robotics (RCAR …, 2023 | | 2023 |
A Skin-Like Hydrogel for Distributed Force Sensing Using an Electrical Impedance Tomography-Based Pseudo-Array Method GMXW H. Chen, X. Yang, J. Geng | | |