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Lidan Wang
ORCID
Publication Activity (10 Years)
Years Active: 2023-2024
Publications (10 Years): 21
Top Topics
Neural Network
Electronic Nose
Recognition Process
Lightweight
Top Venues
Neurocomputing
ISNN
Int. J. Bifurc. Chaos
IEEE Trans. Very Large Scale Integr. Syst.
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Publications
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Li Luo
,
Bochang Li
,
Lidan Wang
,
Jinpei Tan
,
Shukai Duan
,
Chunxiang Zhu
Reconfigurable Stateful Logic Circuit With Cu/CuI/Pt Memristors for In-Memory Computing.
IEEE Trans. Very Large Scale Integr. Syst.
32 (5) (2024)
Musha Ji'e
,
Shukai Duan
,
Lidan Wang
Another n-D Conservative Chaotic/Hyperchaotic System.
IEEE Trans. Circuits Syst. II Express Briefs
71 (3) (2024)
Yucheng Yang
,
Aolong Tan
,
Shukai Duan
,
Lidan Wang
High-performance convolutional neural network emulation via FPGA-integrated memristive circuitry.
Microelectron. J.
150 (2024)
Yijun Qin
,
Huajun Ma
,
Shukai Duan
,
Lidan Wang
Light-Weight SA-BNN: High-Precision Olfactory Recognition of Binary Neural Networks.
ISNN
(2024)
Shichao Zhai
,
Zhe Li
,
Huisheng Zhang
,
Lidan Wang
,
Shukai Duan
,
Jia Yan
A multilevel interleaved group attention-based convolutional network for gas detection via an electronic nose system.
Eng. Appl. Artif. Intell.
133 (2024)
Shi-Yu Yang
,
Hong-An Tang
,
Xiaofang Hu
,
Qingling Xia
,
Lidan Wang
,
Shukai Duan
Adaptive finite-time passivity and synchronization of coupled fractional-order memristive neural networks with multi-state couplings.
Neurocomputing
579 (2024)
Jinpei Tan
,
Siyuan Shen
,
Shukai Duan
,
Lidan Wang
An efficient full-size convolutional computing method based on memristor crossbar.
Artif. Intell. Rev.
57 (6) (2024)
Lei Xia
,
Jianfeng Tang
,
Guangli Li
,
Jun Fu
,
Shukai Duan
,
Lidan Wang
Time Series Classification Based on Forward Echo State Convolution Network.
Neural Process. Lett.
56 (3) (2024)
Yunfei Xiao
,
Huajun Ma
,
Shukai Duan
,
Lidan Wang
A Visual Inertial SLAM Method for Fusing Point and Line Features.
ISNN
(2024)
Huajun Ma
,
Yijun Qin
,
Shukai Duan
,
Lidan Wang
A Robust Visual SLAM System in Dynamic Environment.
ISNN
(2024)
Yu Gong
,
Tao Chen
,
Shu Wang
,
Shukai Duan
,
Lidan Wang
Lightweight spiking neural network training based on spike timing dependent backpropagation.
Neurocomputing
570 (2024)
Shichao Zhang
,
Hangchi Shen
,
Shukai Duan
,
Lidan Wang
Position adaptive residual block and knowledge complement strategy for point cloud analysis.
Artif. Intell. Rev.
57 (5) (2024)
Musha Ji'e
,
Hongxin Peng
,
Shukai Duan
,
Lidan Wang
,
Fengqing Zhang
,
Dengwei Yan
Design and FPGA Implementation of Grid-Scroll Hamiltonian Conservative Chaotic Flows With a Line Equilibrium.
IEEE Trans. Very Large Scale Integr. Syst.
32 (4) (2024)
Zeyu Ruan
,
Jun Mei
,
Yan Li
,
Shukai Duan
,
Lidan Wang
Exponential synchronization of uncertain chaotic inertial neural networks by guaranteed cost intermittent control.
Neurocomputing
570 (2024)
Tao Chen
,
Lidan Wang
,
Jie Li
,
Shukai Duan
,
Tingwen Huang
Improving Spiking Neural Network With Frequency Adaptation for Image Classification.
IEEE Trans. Cogn. Dev. Syst.
16 (3) (2024)
Bin Yang
,
Tao Chen
,
Ai Chen
,
Shukai Duan
,
Lidan Wang
A Lightweight CNN Based on Memristive Stochastic Computing for Electronic Nose.
Int. J. Bifurc. Chaos
34 (3) (2024)
Shengjie Xu
,
Jing Ren
,
Musha Ji'e
,
Shukai Duan
,
Lidan Wang
Application of Reservoir Computing Based on a 2D Hyperchaotic Discrete Memristive Map in Efficient Temporal Signal Processing.
Int. J. Bifurc. Chaos
33 (6) (2023)
Fengchun Tian
,
Xiang Fu
,
Haibing Wang
,
Jingya Zhang
,
Haoran Gao
,
Shukai Duan
,
Lidan Wang
,
Min Tian
NORP: A Compact Neuromorphic Olfactory Recognition Processor With On-Chip Hybrid Learning.
ICTA
(2023)
Siyuan Shen
,
Shukai Duan
,
Lidan Wang
A Hybrid Weight Quantization Strategy for Memristive Neural Networks.
Neurocomputing
562 (2023)
Danhong Yi
,
Linxia Zhang
,
Zijian Wang
,
Lidan Wang
,
Shukai Duan
,
Jia Yan
Robust Domain Correction Latent Subspace Learning for Gas Sensor Drift Compensation.
IEEE Trans. Syst. Man Cybern. Syst.
53 (12) (2023)
Tao Chen
,
Shu Wang
,
Yu Gong
,
Lidan Wang
,
Shukai Duan
Surrogate gradient scaling for directly training spiking neural networks.
Appl. Intell.
53 (23) (2023)