Alert button
Picture for Chin-Teng Lin

Chin-Teng Lin

Alert button

Clustering via torque balance with mass and distance

Add code
Bookmark button
Alert button
Apr 27, 2020
Jie Yang, Chin-Teng Lin

Figure 1 for Clustering via torque balance with mass and distance
Figure 2 for Clustering via torque balance with mass and distance
Figure 3 for Clustering via torque balance with mass and distance
Figure 4 for Clustering via torque balance with mass and distance
Viaarxiv icon

A General Approach for Using Deep Neural Network for Digital Watermarking

Add code
Bookmark button
Alert button
Mar 08, 2020
Yurui Ming, Weiping Ding, Zehong Cao, Chin-Teng Lin

Figure 1 for A General Approach for Using Deep Neural Network for Digital Watermarking
Figure 2 for A General Approach for Using Deep Neural Network for Digital Watermarking
Figure 3 for A General Approach for Using Deep Neural Network for Digital Watermarking
Figure 4 for A General Approach for Using Deep Neural Network for Digital Watermarking
Viaarxiv icon

Tiny Noise Can Make an EEG-Based Brain-Computer Interface Speller Output Anything

Add code
Bookmark button
Alert button
Mar 04, 2020
Xiao Zhang, Dongrui Wu, Lieyun Ding, Hanbin Luo, Chin-Teng Lin, Tzyy-Ping Jung, Ricardo Chavarriaga

Figure 1 for Tiny Noise Can Make an EEG-Based Brain-Computer Interface Speller Output Anything
Figure 2 for Tiny Noise Can Make an EEG-Based Brain-Computer Interface Speller Output Anything
Figure 3 for Tiny Noise Can Make an EEG-Based Brain-Computer Interface Speller Output Anything
Figure 4 for Tiny Noise Can Make an EEG-Based Brain-Computer Interface Speller Output Anything
Viaarxiv icon

EEG-based Brain-Computer Interfaces (BCIs): A Survey of Recent Studies on Signal Sensing Technologies and Computational Intelligence Approaches and their Applications

Add code
Bookmark button
Alert button
Jan 28, 2020
Xiaotong Gu, Zehong Cao, Alireza Jolfaei, Peng Xu, Dongrui Wu, Tzyy-Ping Jung, Chin-Teng Lin

Figure 1 for EEG-based Brain-Computer Interfaces (BCIs): A Survey of Recent Studies on Signal Sensing Technologies and Computational Intelligence Approaches and their Applications
Figure 2 for EEG-based Brain-Computer Interfaces (BCIs): A Survey of Recent Studies on Signal Sensing Technologies and Computational Intelligence Approaches and their Applications
Figure 3 for EEG-based Brain-Computer Interfaces (BCIs): A Survey of Recent Studies on Signal Sensing Technologies and Computational Intelligence Approaches and their Applications
Figure 4 for EEG-based Brain-Computer Interfaces (BCIs): A Survey of Recent Studies on Signal Sensing Technologies and Computational Intelligence Approaches and their Applications
Viaarxiv icon

Supervised Discriminative Sparse PCA with Adaptive Neighbors for Dimensionality Reduction

Add code
Bookmark button
Alert button
Jan 12, 2020
Zhenhua Shi, Dongrui Wu, Jian Huang, Yu-Kai Wang, Chin-Teng Lin

Figure 1 for Supervised Discriminative Sparse PCA with Adaptive Neighbors for Dimensionality Reduction
Figure 2 for Supervised Discriminative Sparse PCA with Adaptive Neighbors for Dimensionality Reduction
Figure 3 for Supervised Discriminative Sparse PCA with Adaptive Neighbors for Dimensionality Reduction
Figure 4 for Supervised Discriminative Sparse PCA with Adaptive Neighbors for Dimensionality Reduction
Viaarxiv icon

EEG-based Drowsiness Estimation for Driving Safety using Deep Q-Learning

Add code
Bookmark button
Alert button
Jan 08, 2020
Yurui Ming, Dongrui Wu, Yu-Kai Wang, Yuhui Shi, Chin-Teng Lin

Figure 1 for EEG-based Drowsiness Estimation for Driving Safety using Deep Q-Learning
Figure 2 for EEG-based Drowsiness Estimation for Driving Safety using Deep Q-Learning
Figure 3 for EEG-based Drowsiness Estimation for Driving Safety using Deep Q-Learning
Figure 4 for EEG-based Drowsiness Estimation for Driving Safety using Deep Q-Learning
Viaarxiv icon

Intra-Variable Handwriting Inspection Reinforced with Idiosyncrasy Analysis

Add code
Bookmark button
Alert button
Dec 19, 2019
Chandranath Adak, Bidyut B. Chaudhuri, Chin-Teng Lin, Michael Blumenstein

Figure 1 for Intra-Variable Handwriting Inspection Reinforced with Idiosyncrasy Analysis
Figure 2 for Intra-Variable Handwriting Inspection Reinforced with Idiosyncrasy Analysis
Figure 3 for Intra-Variable Handwriting Inspection Reinforced with Idiosyncrasy Analysis
Figure 4 for Intra-Variable Handwriting Inspection Reinforced with Idiosyncrasy Analysis
Viaarxiv icon