Ruisen Huang

Position
Assistant Professor
Profile
Dr. Huang joined the Sino-German College of Intelligent Manufacturing at Shenzhen Technology University as an Assistant Professor in 2024. He commenced his academic career at the School of Electrical Engineering, Southwest Jiaotong University (SWJTU), obtaining his Bachelor
Research Interest
Brain-computer interface, functional near-infrared spectroscopy, neuroexoskeleton, neuroprosthesis
E-mail
huangruisen@sztu.edu.cn
Telephone
18476364707

1. Education And Work Experience

Ø Education Experience

l 2017-2022, School of Mechanical Engineering, Pusan National University, Ph.D. of Engineering

l 2014-2017, School of Electrical Engineering, Southwest Jiaotong University, Master of Engineering

l 2012-2014, Université Paris-Saclay CentraleSupélec, General Engineer/Master of Engineering

l 2010-2014, School of Electrical Engineering, Southwest Jiaotong University, Bachelor of Engineering

Ø Work Experience

l 2024-Present, Sino-German College of Intelligent Manufacturing, Shenzhen Technology UniversityAssistant Professor

l 2022-2024, Shenzhen Institute of Advanced Technology, Chinese Academic of SciencePostdoc

l 2014, SuperGrid Institute, Lyon, France, Research Intern

l 2013-2014, Centrale Robot Club, CentraleSupélec, Paris, France, Président


2. Research Field And Achievements

Ø Project Experience

[1]  China Postdoctoral Science Foundation, General Project, 2023M733653, Continuous control of intelligent lower limb neural prostheses based on non-invasive BCI, 2023/08 - 2024/09, 80k RMB, completed, Independent PI;

[2]  China Postdoctoral Science Foundation, Postdoctoral International Exchange Program, None, 2023 Postdoctoral International Academic Exchange Project, 2023/11 - 2024/09, 20k RMB, completed, Independent PI.


Ø Selected Publications

[1] R. Huang, K. Qing, D. Yang, and K.-S. Hong, “Real-time motion artifact removal using a dual-stage median filter,” Biomed. Signal Process. Control, vol. 72, p. 103301, 2022.

[2] R. Huang, K.-S. Hong, C.-L. Bao, and F. Gao, “Real-time motion artifact suppression using convolution neural networks with penalty in fNIRS,” Front. Neurosci., vol. 18, p. 1432138, 2024.

[3] R. Huang, K.-S. Hong, D. Yang, and G. Huang, “Motion artifacts removal and evaluation techniques for functional near- infrared spectroscopy signals,” Front. Neurosci., vol. 16, p. 878750, 2022.

[4] R. Huang and K.-S. Hong, “Multi-channel-based differential pathlength factor estimation for continuous-wave fNIRS,” IEEE Access, vol. 9, pp. 37386-37396, 2021.

[5]  W. Chen, R. Huang, L. Chen, and Y. Luo, “A review of electric vehicle’s battery technology,” Journal of Power Supply, vol. 6, p. 166-178, 2018.

[6] R. Huang, W. Shang, Y. Lin, F. Liang, M. Yin, X.-P. Lu, X. W, and Fei Gao, "Interplay between cerebral and muscular activations during motor tasks: An fNIRS-sEMG study," in Proc. 2024 46th IEEE International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), accepted, Orlando, USA, July 15-19, 2024. (Conference paper, EI)

[7] R. Huang and Fei Gao, "Decoupling brain activation of muscle-caused activation and mental intention-cause activation using the general linear model: An functional near-infrared spectroscopy study," in Proc. 2023 45th IEEE International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), p. 10341029, Sydney, Australia, July 24-27, 2023. (Conference paper, EI)

[8] R. Huang, K.-S. Hong, and Fei Gao, "A pilot study for active muscles decoding using functional near-infrared spectroscopy," in Proc. 2023 11th International IEEE EMBS Conference on Neural Engineering (NER 2023), p. 10123845, Baltimore, U.S., April 24-27, 2023. (Conference paper, EI)

[9] R. Huang, D. Yang, and K.-S. Hong, "Remove the motion artifacts in fNIRS using simplified residual fully connected neural networks," in Proc. 2022 13th Asian Control Conference (ASCC), pp. 1359-1364, Jeju, South Korea, May 04-07, 2022. (Conference paper, EI)


3. Teaching Summary

l Microcomputer Principles and Interface Technology;

l Robot Modeling and Simulation;

l English Reading and Writing