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Meng-Shiun Tsai
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2020 – today
- 2024
- [c15]Jianwen Chen
, Meng-Shiun Tsai
, Wan-Ju Lin
, Che-Lun Hung
:
A Novel End-to-End Ensemble UNet Network Based on Edge Computing for Tool Wear Detection. CACML 2024: 403-408 - [c14]Jian Wen Chen, Meng-Shiun Tsai, Che-Lun Hung:
Enhancing Cutting Sound Quality in Tool Wear Monitoring via Hybrid Domain Loss UNet Network. COMPSAC 2024: 2266-2271 - [c13]Chien K. Liu, Hung M. Li, Meng-Shiun Tsai, Mao Q. Hong, Jia H. Jian:
Two Stage Identification of Robotic Dynamic Parameters with the LuGre Friction Model using Improved Grey Wolf Optimizer Method. ICARM 2024: 917-922 - [c12]Jian Wen Chen, Meng-Shiun Tsai, Che-Lun Hung:
Towards an Effective Tool Wear Monitoring System with an AI Model Management Platform. INDIN 2024: 1-6 - 2022
- [j6]Pu-Yang Tang
, Ming-Tsung Lin, Meng-Shiun Tsai, Chih-Chun Cheng:
Toolpath interpolation with novel corner smoothing technique. Robotics Comput. Integr. Manuf. 78: 102388 (2022) - [c11]Meng-Shiun Tsai, Pei-Ze Chiang, Yi-Hsuan Tsai, Wei-Chen Chiu:
Self-Supervised Feature Learning from Partial Point Clouds via Pose Disentanglement. IROS 2022: 1031-1038 - [c10]Pei-Ze Chiang, Meng-Shiun Tsai, Hung-Yu Tseng, Wei-Sheng Lai, Wei-Chen Chiu:
Stylizing 3D Scene via Implicit Representation and HyperNetwork. WACV 2022: 215-224 - [i2]Meng-Shiun Tsai, Pei-Ze Chiang, Yi-Hsuan Tsai, Wei-Chen Chiu:
Self-Supervised Feature Learning from Partial Point Clouds via Pose Disentanglement. CoRR abs/2201.03018 (2022) - 2021
- [i1]Pei-Ze Chiang, Meng-Shiun Tsai, Hung-Yu Tseng, Wei-Sheng Lai, Wei-Chen Chiu:
Stylizing 3D Scene via Implicit Representation and HyperNetwork. CoRR abs/2105.13016 (2021)
2010 – 2019
- 2019
- [j5]Yu-Hao Chang, Chien-Sheng Liu
, I-Wei Chen, Meng-Shiun Tsai, Hsiang-Chun Tseng:
Open-Loop Control of Voice Coil Motor With Magnetic Restoring Force Using High-Low Frequency Composite Signals. IEEE Access 7: 146258-146263 (2019) - [c9]Xin-Yu Huang, Meng-Shiun Tsai, Ching-Chun Huang:
3D Virtual-Reality Interaction System. ICCE-TW 2019: 1-2 - 2018
- [c8]Meng-Shiun Tsai, Pu-Yang Tang
, Yu-Chan Wu, Chih-Kai Ho:
Novel Interpolation Design for Five-Axis Tool Center Point Path Generation. AIM 2018: 1329-1331 - 2017
- [c7]Hong-Wei Huang, Meng-Shiun Tsai, Ming-Tsung Lin, Mao-Qi Hong, Teng-Yi Huang, Shin-Sheng Yang:
Robust feedrate control for high efficiency milling process. AIM 2017: 874-878 - 2016
- [c6]Meng-Shiun Tsai, Hong-Wei Huang, Shin-Sheng Yang, Chia-Li Chou:
Integrating input shaping technique with interpolator for vibration suppression. AIM 2016: 329-333 - 2015
- [c5]Meng-Shiun Tsai, Shu-Jui Chiu, Chung-Ching Liu
, Pu-Yang Tang
:
Dynamic modeling and vibration suppression of the feed drive system. CASE 2015: 106-110 - 2014
- [c4]Meng-Shiun Tsai, Shih-Kai Wu, Hong-Wei Huang:
Study on acceleration/deceleration feedrate planning for multi-block line segments using estimated contour error formulation. AIM 2014: 489-493 - 2012
- [c3]Meng-Shiun Tsai, Chung-Liang Yen, Hong-Tzong Yau:
Development of Robust Learning Control and Application to Motion Control. ICINCO (1) 2012: 148-152 - 2011
- [j4]Meng-Shiun Tsai, Wei-Hsiang Yuan:
Dynamic Modeling and Decentralized Control of a 3 PRS Parallel Mechanism Based on Constrained Robotic Analysis. J. Intell. Robotic Syst. 63(3-4): 525-545 (2011)
2000 – 2009
- 2008
- [j3]Meng-Shiun Tsai, Hao-Wei Nien, Hong-Tzong Yau
:
Development of an integrated look-ahead dynamics-based NURBS interpolator for high precision machinery. Comput. Aided Des. 40(5): 554-566 (2008) - 2007
- [c2]Ming-Tzong Lin, Meng-Shiun Tsai, Hong-Tzong Yau
:
Development of real-time look-ahead algorithm for NURBS interpolator with consideration of servo dynamics. CDC 2007: 1862-1867 - [c1]Meng-Shiun Tsai, Hao-Wei Nien, Hong-Tzong Yau
:
An integrated look-ahead dynamic interpolator for NURBS curve. CDC 2007: 1868-1873 - 2006
- [j2]Hong-Tzong Yau
, Ming-Tzong Lin, Meng-Shiun Tsai:
Real-time NURBS interpolation using FPGA for high speed motion control. Comput. Aided Des. 38(10): 1123-1133 (2006) - [j1]Meng-Shiun Tsai, Ming-Tzong Lin, Hong-Tzong Yau
:
Development of command-based iterative learning control algorithm with consideration of friction, disturbance, and noise effects. IEEE Trans. Control. Syst. Technol. 14(3): 511-518 (2006)
Coauthor Index

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