Tu Lilan
Professor (3rd level)
Dept. of Systems Science
E-MAIL: tulilan@wust.edu.cn
Educational Background
2015--2016, Kansas University, American, Visiting Scholar.
2004—2007, Wuhan University, Computational Mathematics, Doctor.
2001--2004, Huazhong University of Sci. & Tec., Computational Mathematics, Master.
1994--1998, Southwest Jiaotong University, Applied Mathematics, Bachelor.
Work Experience
2023--Present, Professor, Dept. of Systems Science, College of Science, Wuhan University of Sci. & Tec., China.
2014--2022, Professor, Dept. of Mathematics & Statistics, College of Science, Wuhan University of Sci. & Tec., China.
2009--2013, Associate Professor, Dept. of Mathematics & Statistics, College of Science, Wuhan University of Sci. & Tec., China.
2004--2008, Lecturer, Dept. of Mathematics & Statistics, College of Science, Wuhan University of Sci. & Tec., China.
1998--2003, Assistant, Dept. of Mathematics & Statistics, College of Science, Wuhan University of Sci. & Tec., China.
Research Field
Main research field is Complex Networks, such as:
1: Dynamical Systems
2: Synchronization and Control
3: Transmission Dynamics
4: Structure Recognition
Academic Achievements
1.Awards and Honors
[1] Wuhan university of science and technology " Teaching Model", 2018
[2] Wuhan university of science and technology "SanYuRen" advanced individual,2012
[3] Wuhan university of science and technology “top ten female”, 2010
[4] Wuhan university of science and technology “Science and technology rookie”, 2009
[5] Wuhan university of science and technology “Teaching rookie”, 2008
2. Scientific Research Project
[1] The National Natural Science Foundation of China under Grant 72031009, 2021.01-2025.12 (Key project; Ranked sixth)
Title: Learning-Mechanism-based Evolutionary Behaviors and Management Experiments of Population Games
[2] The Open Fund of Hubei Province Key Laboratory of Systems Science in Metallurgical Process under Grant Z201902, 2020.01-2021.12 (Key project; Person in charge)
Title: Iterative Learning Control and Event Driven Optimization of Partial Interdependent Networks
[3] The National Natural Science Foundation of China under Grant 61473338, 2015.01-2018.12 (General project; Person in charge)
Title: Dynamics Synchronization, Control and Main Structure Identification for Interdependent Networks
[4] The National Natural Science Foundation of China under Grant 60904060, 2010.01-2012.12 (Youth project; Person in charge)
Title: Robust Adaptive Pinning Control, Synchronization and H∞ Optimize of General Complex Networks with Stochastic Disturbance
[5] The Open Fund of Hubei Province Key Laboratory of Systems Science in Metallurgical Process under Grant C201010, 2010.01-2011.12 (General project; Person in charge)
Title: Pinning Adaptive Control and Synchronization of Metallurgical Complex Networks with Disturbance
[6] Hubei province scientific research projects under Grant Q20071101, 2007.01-2009.12 (Youth project; Person in charge)
Title: Control and Synchronization of Dynamical Complex Networks with Delay
[7] The National Natural Science Foundation of China under Grant 61104127, 2012.01-2014.12 (Youth project; Ranked second)
Title: Passive Analysis and Robust Control of Nonlinear Stochastic Systems with Time Delay
[8] The National Natural Science Foundation of China under Grant 61304164, 2014.01-2016.12 (Youth project; Ranked second)
Title: Synchronization Process of Corporate Networks Based on Eigenvalue Spectrum
[9] The Open Fund of Hubei Province Key Laboratory of Systems Science in Metallurgical Process under Grant Y201412, 2014.01-2015.12 (Youth project; Person in charge)
Title: Structure Identification of Complex Networks with Noise via Finite-time Robust Control
3. Textbooks
Tu Lilan, Li Deyi, Numerical Calculation Methods, Science Press, June 2016.
4. Recent papers (2017-present)
English Journal papers
[1] Lang Chai, Lilan Tu*, Xianjia Wang, Qingqing Su. Hypergraph modeling and hypergraph multi-view attention neural network for link prediction. Pattern Recognition, 2024, 149: 110292.
[2] Yichao Wang, Lilan Tu*, Xianjia Wang, Yifei Guo. Evolutionary vaccination game considering intra-seasonal strategy shifts regarding multi-seasonal epidemic spreading. Chaos, Solitons and Fractals, 2024,180: 114419.
[3] Xinyi Yu, Lilan Tu*, Lang Chai, Xianjia Wang, Juan Chen. Construction of implicit social network and recommendation between users and items via the ISR-RRM algorithm. Expert Systems with Applications, 2024, 235: 121229.
[4] Yifei Guo, Lilan Tu*, Xianjia Wang. The coupled dynamics of awareness and disease: based on the adaptive mechanism and the surroundings reinforcement. Physica A: Statistical Mechanics and its Applications, 2024
[5] Shun Ye, Lilan Tu*, Xianjia Wang, Jia Hu, Yichao Wang. Opinion consensus incorporating higher-order interactions on individual-group networks. Chin. Phys. B, 2024, 33: 070201.
[6] Han Shen, Lilan Tu*, Xianjia Wang. The influence of emotional tendency on the dissemination and evolution of opinions in two-layer social networks. Physica A: Statistical Mechanics and its Applications, 2024, 641: 129729.
[7] Xiaoyang Wang, Lilan Tu*, Yichao Wang, Xinyi Yu. Individual heterogeneity promotes the evolution of cooperation on temporary networks. Journal of Complex Networks, Volume 12, Issue 3, June 2024, cnae024, https://doi.org/10.1093/comnet/cnae024
[8] Tianjiao Guo, Lilan Tu*, Lang Chai, Yifei Guo. Construction and analysis of inter-couplings for the structural controllability of interdependent networks. International Journal of Control, Automation and Systems, 2023, 21(7): 2223-2233.
[9] Lang Chai, Lilan Tu*, Xinyi Yu, Xianjia Wang, Juan Chen. Link prediction and its optimization based on low-rank representation of network structures. Expert Systems with Applications, 2023, 219: 119680.
[10] Tianjiao Guo, Lilan Tu*, Yifei Guo, Jia Hu, Qingqing Su. Control-capacity analysis and optimized construction for controlled interdependent networks. Physica A-Statistical mechanics and its applications, 2023, 616: 128597.
[11] Tianjiao Guo, Lilan Tu*, Lang Chai, Qingqing Su. Iterative learning heterogeneous trajectory tracking for partially interdependent networks. Asian Journal of Control, 2022, 24: 732– 742.
[12] Lang Chai, Lilan Tu*, Xianjia Wang, Juan Chen. Network-energy-based predictability and link-corrected prediction in complex networks. Expert Systems with Applications, 2022, 207: 118005.
[13] Qingqing Su, Lilan Tu*, Xianjia Wang, Hang Rong. Construction and robustness of directed-weighted financial stock networks via meso-scales. Physica A-Statistical mechanics and its applications, 2022, 605: 127955.
[14] Yifei Guo, Lilan Tu*, Han Shen, and Lang Chai. Transmission dynamics of disease spreading in multilayer networks with mass media. Phys. Rev. E, 2022, 106: 034307.
[15] Han Shen, Lilan Tu*, Yifei Guo, Juan Chen. The influence of cross-platform and spread sources on emotional information spreading in the 2E-SIR two-layer network. Chaos, Solitons and Fractals, 2022, 165: 112801.
[16] Lang Chai, Lilan Tu*, Yongmei Ding. Construction of China’s Tourism Economic Spatial Model via Complex Networks. Studies in regional science, 2021, 51(1): 87-99.
[17] Yong Yang, Lilan Tu*, Tianjiao Guo,Jiabo Chen. Spectral Properties of Supra-Laplacian for Partially Interdependent Networks. Applied Mathematics and Computation, 2020, 365: 124740.
[18] Kuanyang Li, Lilan Tu*, Lang Chai. Ensemble-model-based link prediction of complex networks. Computer Networks, 2020, 166: 106978.
[19] Yujuan Wang, Lilan Tu*, Tianjiao Guo. Finite-time Optimal Pinning Control and Synchronization for Partially Interdependent Networks. Optimal Control Applications & Mehtods, 2020, 41 (6) : 2308-2319.
[20] Yong Yang, Lilan Tu*, Kuanyang Li. Optimizing inter-structure for enhancing the synchronizability of interdependent networks. Physica A-Statistical mechanics and its applications, 2019, 521: 310~318.
[21] Tianjiao Guo,Lilan Tu*,Jiabo Chen. Mean-square heterogeneous synchronization of interdependent networks with stochastic disturbances. Advances in Difference Equations,2019, 2019: 201.
[22] Yifan Huang, Lilan Tu*. Construction and Analysis of Interdependent Networks Based on Time Series and Horizontal Visibility Graphs. SN Applied Sciences, 2019, 1: 814.
[23] Zhen Jia, Huazhou Chen, Lilan Tu, Lang Zeng. Stability and feedback control for a coupled hematopoiesis nonlinear system. Advances in Difference Equations, 2018, 2018: 401.
[24] Lilan Tu*, Shuai Song, Yujuan Wang, Kuanyang Li. The relationship between the topology and synchronizability of partially interdependent networks. EPL, 2017, 119(4): 40004.
Chinese Journal papers
[1] 郭天姣, 涂俐兰*. 噪声下相互依存网络的自适应H无穷异质同步. 自动化学报, 2020, 46(6): 1229-1239. (Tianjiao Guo, Lilan Tu*. Adaptive H-infinity heterogeneous synchronization of interdependent networks with noise. Journal of Automatica Sinica, 2020, 46(6): 1229-1239.)
[2] 岳昊晟, 余胜春, 涂俐兰*. 基于协整的股票相互依存网络构建及分析. 系统科学与数学, 2019, 39(5): 790-803. (Haoshen Yue, Shenchun Yu, Lilan Tu*. Construction and analysis of stock interdependence network based on cointegration. Systems Science and Mathematics, 2019, 39(5): 790-803.)
[3] 涂俐兰*, 王宇娟, 胡洋. 不确定临界混沌系统的有限时间同步与参数识别. 数学的实践与认识, 2018, 48(19): 105-112. (Lilan Tu*, Yujuan Wang, Yang Hu. Finite time synchronization and parameter identification of uncertain critical chaotic systems. Mathematics in Practice and Theory, 2018, 48(19): 105-112.)
[4] 王宇娟, 涂俐兰*, 宋帅, 李宽洋. 耦合含时滞的相互依存网络的局部自适应异质同步. 物理学报, 2018, 67(5): 050504. (Yujuan Wang, Lilan Tu*, Shuai Song, Kuaiyang Li. Local adaptive heterogeneous synchronization of interdependent networks with time-delay coupling. Acta Physica Sinica, 2018, 67(5): 050504.)
Conference papers
[1] Jiabo Chen, Lilan Tu*, Yong Yang, Qing Zhang. Event-Triggered Consensus of Directed Interdependent Networks. International conference on decision science & management (ICDSM 2021): Advances in decision science & management, 2021.7.
[2] Kuanyang Li, Lilan Tu*, Yong Yang. Random forest-based link prediction for complex networks. 4th Annual International Conference on Information System and Artificial Intelligence, 2019.5.17-18.
[3] Kuanyang Li, Lilan Tu*, Yong Yang, Tianjiao Guo. Construction and Robustness of Interdependent Networks via Time Series and Visibility Graph. 2018 2nd International Conference on Modeling, Simulation and Optimization Technologies and Applications (MSOTA2018), 2018.11.25-2018.11.26.
[4] Yifan Huang, Lilan Tu*. Asymptotically Local Synchronization of An Interdependent Network with Two Sub-Networks and Delays. 7th International Congress of Information and Communication Technology, 2017.1.1-2017.1.2.