Ran Dong
Orcid: 0000-0001-6764-4861
According to our database1,
Ran Dong
authored at least 21 papers
between 2017 and 2024.
Collaborative distances:
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Bibliography
2024
IEEE Trans. Cogn. Dev. Syst., April, 2024
Tuberculosis detection bars on VGG19 transfer learning and Zebra Optimization Algorithm.
EAI Endorsed Trans. Pervasive Health Technol., 2024
IEEE Access, 2024
2023
Neural Comput. Appl., November, 2023
A real-time recognition gait framework for personal authentication via image-based neural network: accelerated by feature reduction in time and frequency domains.
J. Real Time Image Process., October, 2023
Sensors, August, 2023
The influence of online multiplayer games on social capital and interdependent well-being in Japan.
Entertain. Comput., August, 2023
CCF Trans. Pervasive Comput. Interact., June, 2023
Discrete-time feedback control for highly nonlinear hybrid stochastic systems with non-differentiable delays.
Syst. Control. Lett., May, 2023
Physical Knowledge-Enhanced Deep Neural Network for Sea Surface Temperature Prediction.
IEEE Trans. Geosci. Remote. Sens., 2023
Proceedings of the SIGGRAPH Asia 2023 Technical Communications, 2023
2022
Signal Process., 2022
Proceedings of the IEEE Intl. Conf. on Dependable, 2022
2021
Proceedings of the SIGGRAPH 2021: Special Interest Group on Computer Graphics and Interactive Techniques Conference, 2021
Interacting with Humanoid Robots: Affective Robot Motion Design with 3D Squash and Stretch Using Japanese Jo-ha-kyu Principles in Bunraku.
Proceedings of the SIGGRAPH 2021: Special Interest Group on Computer Graphics and Interactive Techniques Conference, 2021
Motion Feature Extraction and Stylization for Character Animation using Hilbert-Huang Transform.
Proceedings of the ACM ICEA '21: 2021 ACM International Conference on Intelligent Computing and its Emerging Applications, Jinan, China, December 28, 2021
2020
Motion Capture Data Analysis in the Instantaneous Frequency-Domain Using Hilbert-Huang Transform.
Sensors, 2020
Robot motion design using bunraku emotional expressions - focusing on Jo-Ha-Kyū in sounds and movements.
Adv. Robotics, 2020
2019
The beauty of breaking rhythms: affective robot motion design using Jo-Ha-Kyū of bunraku puppet.
Proceedings of the Special Interest Group on Computer Graphics and Interactive Techniques Conference, 2019
2017
Proceedings of the Special Interest Group on Computer Graphics and Interactive Techniques Conference, 2017
Proceedings of the Computer Graphics International Conference, 2017