l专著 耦合振子系统的振荡猝灭动力学, 科学出版社,2019,ISBN 9787030628329,http://www.ecsponline.com/goods.php?id=202387; l专利 (1)刘维清,罗涛,言林,刘志勇,一种基于混合机器学习框架的忆阻神经元神比形态动力学预测方法,202512012832.6,申请日:2025-12-29. (2)刘维清,王龙俊,言林,俞晴,刘志勇,一种基于幅度异质性的部分振幅度死亡实现方法,202610474158.5,申请日:2026-4-11 (3)刘维清,廉开政,周兴龙等,在耦合振子系统中实现反向同步和旋转反向同步的方法, ZL2019108276671, 国家发明专利,申请时间20190903,授权时间:202200610 (4)刘维清,雷晓琪等,一种在耦合振子系统中实现非对称振荡死亡的方法,CN 2019104762026,申请时间:20190603,授权日期:20230609 (5).刘维清,刘汉昌,周兴龙,一种理论预测耦合非全同振子系统中同步包络的参数的方法,CN2021110917182,申请时间:20210917,授权日期:20230818 (6).刘维清,谢江南,林境鸿,一种基于振幅包络的延展态的实现方法,2022112992500, 申请时间:2022-10-24, 授权日期:20230804 (7)刘维清,林境鸿,罗涛,刘志勇,一种基于耦合神经元振子系统的相位-振幅包络同步实现的方法,202510269586.X,2025.09.05 (8)刘维清;林境鸿;谢江南,一种确定耦合振子系统振幅包络参数的计算机系统,荷兰申请号\专利号: N2035660,荷兰申请日: 2023年8月23日,荷兰授权日:2025年3月6日。 (9)刘维清 谭秋婷,庄虹灵,刘志勇,一种多并联跟网型变流器的暂态同步稳定性分析方法,202510210869.7,申请日:2025.02.25,授权日:2025.10.13 (10)刘维清,言林,罗涛,刘志勇,一种利用非易失性忆阻器耦合提升神经元电路同步能力的方法,202510850513.X,申请日:2025年06月24日。 (11)刘维清,言林,罗涛,刘志勇,一种基于双稳态忆阻神经元电路实验模式识别的方法,202511908961.7,申请日:2025-12-17 (12)刘维清,言林,罗涛,刘志勇,一种基于对称稳态忆阻神经元电路实现对称神经形态行为的方法,202511928409.4,2025-12-19 (13)刘维清,言林,董升,王龙俊,刘志勇,一种基于7维神经网络的级联双向扩散图像加密方法,2026105108354,申请日:2026-4-17。 l论文 [1] Jiangnan Chen · Weiqing Liu · Yun Zhu · Jinghua Xiao,The effects of dual-channel coupling on the transition from amplitude death to oscillation death, Europhysics Letters 115(2):20011 (2016). [2] Guibao Xiao · Weiqing Liu · Yueheng Lan ·Jinghua Xiao,Stable amplitude chimera states and chimera death in repulsively coupled chaotic oscillators, Nonlinear Dynamics, 93( 3) 1047–1057 (2018) [3] Weiqing Liu, Tae Yun Kim, Xiaodong Huang, Michael B. Liu, Gideon Koren, Bum-Rak Choi, Zhilin Qu, Mechanisms linking T-wave alternans to spontaneous initiation of ventricular arrhythmias in rabbit models of long QT syndrome, J Physiol,596(8) 1341–1355 (2018) [4] Xiaoqi Lei,Weiqing Liu*,Wei Zou,Jürgen Kurths,Coexistence of oscillation and quenching states: Effect of low-pass active filtering in coupled oscillators,Chaos 29(7):073110 (2019) [5] Weiqing Liu*,Xiaoqi Lei,Jiangnan Chen ,Effects of periodically modulated coupling on amplitude death in nonidentical oscillators,EPL (Europhysics Letters) 125(5),50004(2019) [6] Wei Chen, Weiqing Liu, Yueheng Lan Jinghua Xiao, Explosive synchronization transition in a ring of coupled oscillators,Communications in Nonlinear Science and Numerical Simulation,70, 271-281 (2019). [7] Kaizheng Lian,Xinglong Zhou,Weiqing Liu*,Jinghua Xiao, Antiphase synchronization and central symmetrical antiphase synchronization in magnetic field coupled circuits, Nonlinear Dyn 99:3217–3229(2020), [8] Shilan Su, Jinghua Xiao, Weiqing Liu(*) and Ye Wu, Experimental study on dynamics of the clapping coupling system,Europhysics Letters, 129(6) 60004(2020). [9] Shi-Lan Su, Jinghua Xiao, Ye Wu, Weiqing Liu, Synchronization mechanism of clapping rhythms in mutual interacting individuals, Chin. Phys. B Vol. 30, No. 1 (2021) 010505. [10] Wei Chen, Shengfeng Wang, Yueheng Lan, Weiqing Liu, Jinghua Xiao, Explosive synchronization caused by optimizing synchrony of coupled phase oscillators on complex networks, The European Physical Journal B 94(10):205,(2021). [11] Hanchang Liu, Weiqing Liu, Chaoxin Fu, and Meng Zhan,Sinusoidal and nonsinusoidal patterns in amplitude envelope synchronization, Physical Review E (2022), 105, 044209 [12] Weiqing Liu, Jiangnan Xie, Hanchang Liu, and Jinghua Xiao, Heterogeneity induced splay state of amplitude envelope in globally coupled oscillators, Chaos, 32, 123117, 2022 [13] Qiuting Tan, Hongling Zhuang, Weiqing Liu*, Transient synchronization stability analysis of multi-parallel grid-following voltage source converters considering the coupling effects of phase-locked loop and current control,Journal of Power Electronics,Volume 26, pages 139–152, (2026) [14] Lin Yan, Tao Luo, Zhiyong Liu, and Weiqing Liu*, Effects of non-volatility of memristor on the synchronizability of memristor-coupled heterogeneous neurons,Chaos 35, 093108 (2025). [15] Lin Yan, · Zhibin Yan, · Tao Luo, · Zhiyong Liu, · Weiqing Liu*,State Switching and neuromorphic behaviors of bistable locally active memristive neuron near the edge of chaos, Nonlinear Dynamics (2026) 114:403 [16] Lin Yan, · Zhibin Yan, · Tao Luo, · Zhiyong Liu, · Weiqing Liu*, Biphasic neuromorphic behaviors near the edge of chaos in memristive neuron with symmetrical stable states, Dynamics114, 579 (2026) [17] Lin Yan, Sheng Dong,Weiqing Liu, Efficient image encryption scheme based on 7D-FHN neural network with bit-Level permutation and bidirectional column cascaded diffusion, physica script , 2026 [18] Longjun Wang,Jiangnan Chen,Lin Yan,Weiqing Liu*,Partial amplitude death in aging transition of coupled oscillators with amplitude heterogeneity,Physical review E. 113, 044213,(2026) [19] Tao Luo , Lin Yan and Weiqing Liu* , Machine Learning-Based Prediction Framework for Complex Neuromorphic Dynamics of Third-Order Memristive Neurons at the Edge of Chaos,Entropy, 2026,28,42 [20] Tao Luo, Lin Yan, Longjun Wang, Weiqing Liu, Machine Learning Prediction of Explosive Death Transitions in Environmentally Coupled Oscillator Networks, Physical Review E,2026 [21] Tao Luo, Xiaolang Qian, Hongling Zhuang, Lin Yan, Weiqing Liu, Transition from in-phase to anti-phase synchronization in two attraction-repulsion coupled neurons, CNSNS, 2026 [22] Tao Luo, Weiqing Liu*,Synergistic Feature Learning: Combining Temporal Dynamics from Next-Generation Reservoir Computing with Spectral Embeddings from the Nyström Method in Reservoir Computing,Journal of Physics: Conference Series 3211 (2026) 012011. [23] 刘维清,吴徽,复杂网络中时间尺度对耦合振子振幅死亡的影响,河南师范大学学报,49(5)(2021) [24] 刘维清,刘汉昌,朱云,许海燕,低通滤波器对时延耦合振子系统振幅死亡的影响,河南师范大学学报,2022,50(3). [25] 刘维清,彭玉祥. 吸引与排斥耦合神经元中的稳定幅度奇异态[J]. 江西师范大学学报( 自然科学版) , 2022, 46( 4) : 399-405. [26] 马丽梅,刘维清,新型高性能多相交错并联脉冲开关电源的设计,江西冶金,2023; [27] 刘维清,石世嫔.耦合振子系统中振幅包络同相同步向反相同步的转变[J].河南师范大学学报(自然科学版), 2024,52(5):43-50; [28] 董升, 刘维清. 具有超级多稳态的简单忆阻混沌系统的分析与电路实现 [ J]. 电子元件与材料, 2024, 43 (12): 1525-1532; [29] 王梦环,刘维清,基于PT对称的双负载无线电能传输特性研究,电器与能效管理技术,2024 12 0001-09; [30] 刘维清,林境鸿,非线性耦合神经元振子系统的相位-频率同步,河南师范大学学学报,2025. [31] 刘维清,王龙俊,俞晴,言林,S型非易失性局部有源忆阻器的混沌电路构建及动力学分析,河南师范大学学学报,2027. |