Alert button
Picture for Jing Pei

Jing Pei

Alert button

Understanding the Functional Roles of Modelling Components in Spiking Neural Networks

Add code
Bookmark button
Alert button
Mar 25, 2024
Huifeng Yin, Hanle Zheng, Jiayi Mao, Siyuan Ding, Xing Liu, Mingkun Xu, Yifan Hu, Jing Pei, Lei Deng

Viaarxiv icon

Enhancing Graph Representation Learning with Attention-Driven Spiking Neural Networks

Add code
Bookmark button
Alert button
Mar 25, 2024
Huifeng Yin, Mingkun Xu, Jing Pei, Lei Deng

Viaarxiv icon

Exploiting Spiking Dynamics with Spatial-temporal Feature Normalization in Graph Learning

Add code
Bookmark button
Alert button
Jun 30, 2021
Mingkun Xu, Yujie Wu, Lei Deng, Faqiang Liu, Guoqi Li, Jing Pei

Figure 1 for Exploiting Spiking Dynamics with Spatial-temporal Feature Normalization in Graph Learning
Figure 2 for Exploiting Spiking Dynamics with Spatial-temporal Feature Normalization in Graph Learning
Figure 3 for Exploiting Spiking Dynamics with Spatial-temporal Feature Normalization in Graph Learning
Figure 4 for Exploiting Spiking Dynamics with Spatial-temporal Feature Normalization in Graph Learning
Viaarxiv icon

Brain-inspired global-local hybrid learning towards human-like intelligence

Add code
Bookmark button
Alert button
Jun 05, 2020
Yujie Wu, Rong Zhao, Jun Zhu, Feng Chen, Mingkun Xu, Guoqi Li, Sen Song, Lei Deng, Guanrui Wang, Hao Zheng, Jing Pei, Youhui Zhang, Mingguo Zhao, Luping Shi

Figure 1 for Brain-inspired global-local hybrid learning towards human-like intelligence
Figure 2 for Brain-inspired global-local hybrid learning towards human-like intelligence
Figure 3 for Brain-inspired global-local hybrid learning towards human-like intelligence
Figure 4 for Brain-inspired global-local hybrid learning towards human-like intelligence
Viaarxiv icon

Adversarial symmetric GANs: bridging adversarial samples and adversarial networks

Add code
Bookmark button
Alert button
Jan 01, 2020
Faqiang Liu, Mingkun Xu, Guoqi Li, Jing Pei, Luping Shi, Rong Zhao

Figure 1 for Adversarial symmetric GANs: bridging adversarial samples and adversarial networks
Figure 2 for Adversarial symmetric GANs: bridging adversarial samples and adversarial networks
Figure 3 for Adversarial symmetric GANs: bridging adversarial samples and adversarial networks
Figure 4 for Adversarial symmetric GANs: bridging adversarial samples and adversarial networks
Viaarxiv icon

Transfer Learning in General Lensless Imaging through Scattering Media

Add code
Bookmark button
Alert button
Dec 28, 2019
Yukuan Yang, Lei Deng, Peng Jiao, Yansong Chua, Jing Pei, Cheng Ma, Guoqi Li

Figure 1 for Transfer Learning in General Lensless Imaging through Scattering Media
Figure 2 for Transfer Learning in General Lensless Imaging through Scattering Media
Figure 3 for Transfer Learning in General Lensless Imaging through Scattering Media
Figure 4 for Transfer Learning in General Lensless Imaging through Scattering Media
Viaarxiv icon

GXNOR-Net: Training deep neural networks with ternary weights and activations without full-precision memory under a unified discretization framework

Add code
Bookmark button
Alert button
May 02, 2018
Lei Deng, Peng Jiao, Jing Pei, Zhenzhi Wu, Guoqi Li

Figure 1 for GXNOR-Net: Training deep neural networks with ternary weights and activations without full-precision memory under a unified discretization framework
Figure 2 for GXNOR-Net: Training deep neural networks with ternary weights and activations without full-precision memory under a unified discretization framework
Figure 3 for GXNOR-Net: Training deep neural networks with ternary weights and activations without full-precision memory under a unified discretization framework
Figure 4 for GXNOR-Net: Training deep neural networks with ternary weights and activations without full-precision memory under a unified discretization framework
Viaarxiv icon