一、团队简介
复杂系统控制理论及其应用团队现有专职人员6人,其中,高级职称4人,四川省第十三批学术和技术带头人后备人选1人。
团队专注复杂系统控制理论研究,聚焦相关数学理论、控制方法、电力基础等在人工智能等国际热门领域的基础研究。近年主持国家级项目1项,省部级项目10余项,厅局级项目10余项,横向项目10余项。科研成果:授权发明专利5项,高水平学术论文SCI30篇,其中(一区/TOP刊10篇)。
研究方向:复杂系统理论、智能电网、人工智能算法、神经网络稳定性理论、分数阶系统理论及应用、非线性系统同步与控制、电力系统稳定与优化、模糊系统理论等动力系统基础理论及应用。
二、代表性科研成果
(一)科研项目
1、国家自然科学基金青年项目:分数阶多维忆阻神经网络的耗散性分析与Mittag-Leffler同步研究(12001452) 2021/01-2023/12 结题
2、四川省科技厅中央引导地方科技发展基金项目:基于人工智能的多维多层神经网络的动力学特性研究(2021ZYD0012) 2021/07-2022/06 结题
3、四川省科技厅自然科学基金面上项目:人工智能背景下复杂神经网络的有限时间稳定分析与最优控制设计(2022NSFSC0532) 2021/01-2023/12 结题
4、教育部“春晖计划”合作科研项目:基于忆阻器的四元数时滞神经网络动力学分析 (HZKY20220580) 2023/05-2025/05 在研
5、油气藏地质及开发工程国家重点实验室开放基金项目:基于忆阻神经网络的数字岩心图像处理(PLN2022-20) 2022/10-2024/10 在研
主持四川省科技厅自然科学基金面上项目:分数阶高维双向双层神经网络的稳定与同步研究(2025ZNSFSC0077) 2025/01-2026/12 在研
6.风电储能混合系统的协调调度技术研究,四川省教育厅重点项目,2018.01,已结题。
7.计及可再生能源和电动汽车并网的微电网系统优化调度研究,ok138cn太阳集团529青年基金,2017.01,已结题。
8、四川省自然科学基金青年项目:含多个Markov参数的模糊跳变系统的异步容错控制研究(2023NSFSC1363),2023.01-2024.12;
9、教育部“春晖计划”合作科研项目:基于隐semi-Markov模型的模糊跳变系统的异步容错控制研究(HZKY20220568), 2023.05-2025.05;
10、数学地址四川省重点实验室开放基金项目:模糊切换系统的容错控制在地质工程中的应用 (scsxdz2019yb03), 2020.01-2021.12;
11.无缝线路钢轨闪光焊接头质量研究,成都英普飞自动化设备有限公司,已结题
12.基于鲁棒滤波理论的主动噪声控制技术及其在无缝线路钢轨闪光焊的应用研究,四川材控智能科技有限公司,已结题
(二)代表论文
[1] Jianying Xiao#*, Jinde Cao, Jun Cheng, Shiping Wen, Ruimei Zhang, Shouming Zhong, Novel inequalities to global Mittag-Leffler synchronization and stability analysis of fractional-order quaternionvalued neural networks, IEEE Transactions on Neural Networks and Learning Systems, 2021, 32(8): 3700-3709. (高被引论文, #第一作者, *通讯作者,中科院一区,排名第一,IF=14.255,引用31次)
[2] Jianying Xiao#*,Jun Cheng, Kaibo Shi, Ruimei Zhang, A general approach to fixed-time synchronization problem for fractional-order multi-dimension-valued fuzzy neural networks based on memristor, IEEE Transactions on Fuzzy Systems, 2022, 33(10): 5656-5665. (高被引论文, #第一作者, *通讯作者,中科院一区,排名第一,IF=12.253,引用58次)
[3] Jianying Xiao#*, Shouming Zhong,Shiping Wen, Unified analysis on the global dissipativity and stability of fractional-order multidimension-valued memristive neural networks with time delay, IEEE Transactions on Neural Networks and Learning Systems, 2022, 33(10): 5656-5665. (SCI, #第一作者, *通讯作者,中科院一区,排名第一,引用33次)
[4] Jianying Xiao#*, Xiao Guo*, Yongtao Li, Shiping Wen, Kaibo Shi, Yiqian Tang, Extended analysis on the global Mittag-Leffler synchronization problem for fractional-order octonion-valued BAM neural networks, Neural Networks, 2022,154:491-507. (SCI, #第一作者, *通讯作者,中科院一区,排名第一,IF=9.657,引用29次)
[5] Jianying Xiao#*, Yongtao Li, Shiping Wen, Mittag-Leffler synchronization and stability analysis for neural networks in the fractional-order multi-dimension field, Knowledge-based Systems, 2021,231:107404. (SCI, #第一作者, *通讯作者, 中科院一区,排名第一,引用19次)
[6] Jianying Xiao#*, Jinde Cao, Jun Cheng, Shouming Zhong, Shiping Wen, Novel methods to finite-time Mittag-Leffler synchronization problem of fractional-order quaternion-valued neural networks, Information Sciences, 2020, 526: 221-244. (SCI, #第一作者, *通讯作者, 中科院一区,排名第一,IF=5.910,引用72次)
[7] Jianying Xiao#*, Shiping Wen, Xujun Yang, Shouming Zhong, New approach to global Mittag-Leffler synchronization problem of fractional-order quaternion-valued BAM neural networks based on a new inequality, Neural Networks, 2020, 122: 320-337.(高被引论文, #第一作者, *通讯作者, 中科院二区,排名第一,IF=5.535,引用89次)
[8] Jianying Xiao#*, Shouming Zhong, Yongtao Li, Fang Xu,Finite-time Mittag-Leffler synchronization of fractional-order memristive BAM neural networks with time delays, Neurocomputing, 2017, 219: 431-439.(高被引论文, #第一作者, *通讯作者,中科院二区,排名第一, IF=3.241,引用131次)
[9] Jianying Xiao#*, Shouming Zhong, Extended dissipative conditions for memristive neural networks with multiple time delays, Applied Mathematics and Computation, 2018, 323: 145-163.(高被引论文, #第一作者, *通讯作者, 中科院二区,排名第一, IF=3.472,引用46次)
[10] Liu X, Shi K, Yan H, et al. Integral-based event-triggering switched LFC scheme for power system under deception attack[J]. Expert Systems with Applications, 2023, 234: 121075.(中科院一区TOP,IF=7.6)
[11] Liu X, Shi K, Ma C, et al. Event-triggering load frequency control for multi-area power system based on random dynamic triggering mechanism and two-side closed functional[J]. ISA transactions, 2023, 133: 193-204. (中科院二区TOP,IF=6.3)
[12] Liu X, Shi K, Cheng J, et al. Adaptive memory-based event-triggering resilient LFC for power system under DoS attack[J]. Applied Mathematics and Computation, 2023, 451: 128041. (中科院二区TOP,IF=3.5)
[13] Liu X, Shi K. Further results on stability analysis of time-varying delay systems via novel integral inequalities and improved Lyapunov-Krasovskii functionals[J]. AIMS Math, 2022, 7: 1873-1895. (中科院三区)
[14] 刘星月, 唐琳, 喻娜. 基于负荷比例的综合供能系统最优运行模式的评估方法[J]. 中国电力, 2019, 52(6):9.(北大核心)
[15] 刘星月,田永强,施开波,等.计及DoS攻击和通信时滞的电力系统负荷频率控制[J].工程科学与技术,2024,56(3):1–10.(EI)
[16] Wu H, Liu X, Ding M. Dynamic economic dispatch of a microgrid: Mathematical models and solution algorithm[J]. International Journal of Electrical Power & Energy Systems, 2014, 63: 336-346.(中科院2区)
[17] 刘星月, 吴红斌. 太阳能综合利用的冷热电联供系统控制策略和运行优化[J]. 电力系统自动化, 2015(12):6.(EI)
[18] Renfu Luo, Jiaojiao Ren*,Kaibo Shi, Stability analysis of delayed T-S fuzzy power system via a cubic function negative determination lemma. Nonlinear Dynamics 2025, 113(6):5439-5456 (二区TOP)
[19]Jiaojiao Ren, Xuemeng Fan, Ran Huang, Guoqing Jiang, Cong Wu*, Exponential H∞ output control for switching fuzzy vehicle lateral dynamics via event-triggered mechanism. IEEE Transactions on Intelligent Vehicles DOI 10.1109/TIV.2024.3398735, 2024.(一区)
[20]Jiaojiao Ren*, Can Zhao, Jianying Xiao, Renfu Luo, Nanrong He, Exponential H∞ output control for switching fuzzy systems via event-triggered mechanism and logarithmic quantization. Fractal and fractional 8: 290, 2024.(二区)
[21]Zijie Shen,Tianmin Huang,Li Yang,Xueqin Li,Improved NSAF algorithms with variable control parameter against impulsive noises,Circuits System and Signal Processing, 2020,39(4),2207-2222.
[22]Zijie Shen,Linna Shi,Lin Tang,Robust gain-combined proportionate normalized subband adaptive filter algorithm with a variable control parameter step-size scaler,Signal, Image and Video Processing,2023,17: 2193–2200
[23]Zijie Shen,Lin Tang,Li Yang,Robust Normalized Subband Adaptive Filter Algorithm with a Sigmoid-Function-Based Step-Size Scaler and Its Convex Combination Version,Mathematical Problems in Engineering, 2021,1-11.
[24] Yinuo Wang (王艺诺), Chuandong Li, Hao Deng, Hongjuan Wu. S-asymptotically w-periodic mild solutions for non-instantaneous impulsive integro-differential equations with state-dependent delay. Mathematical Methods in the Applied Sciences. 46 (9), 11229--11245, 2023.(中科院三区,IF=2.1)
[25] Yinuo Wang (王艺诺), Chuandong Li, Hongjuan Wu, Hao Deng. Existence of solutions for fractional instantaneous and non-instantaneous impulsive differential equations with perturbation and Dirichlet boundary value. Discrete and Continuous Dynamical Systems-Series S. 15 (7), 1767--1776, 2022.(中科院四区)
[26] Yinuo Wang (王艺诺), Xingping Wu, Chunlei Tang. Infinitely many high energy radial solutions for Schrodinger--Poisson system. Applied Mathematics Letters. 100 (2020), 106012.(中科院二区TOP,IF=2.9)
[27]. Shan Zhao,Zhao Li,Interpolation functions of interval type-2 fuzzy systems,Journal of Intelligent & Fuzzy Systems,2021, 41:3183–3200.
[28]. Shan Zhao, Kaibo Shi. International Journal of Fuzzy Systems Interpolation functions of general type-2 fuzzy systems. International Journal of Fuzzy Systems, 2024.
[29]. Shan Zhao, Zhao Li. Chaos analysis and traveling wave solutions for fractional (3+1)-dimensional Wazwaz Kaur Boussinesq equation with beta derivative, Scientific reports, 2024,14: 23034.
(三)获奖、著作、教材、专利
1)一种基于冷热电负荷比例的CCHP系统评估优化方法,发明专利,专利号:ZL 2018 1 1384467.5,授权公告日:2022.10.28
2)一种IT-2型模糊LFC电力系统的模糊控制器设计方法 ZL202410841477. 授权时间:2024.8.16. 发明专利。
3)一种便于维修的监控信号处理设备,专利号:ZL 2020 2 2700795.0,申请时间:2020.11.20
4)一种网络信号处理设备,专利号:ZL 2020 2 2700742.9,申请时间:2020.11.20
5)国家发明专利:一种基于混沌系统的广义二型模糊自适应控制方法及系统,专利号:ZL 2024 1 0559757.8,授权日期:2024年07月09日。
(团队联系人:刘星月 liuxingyue0828@163.com)