副教授

马力

  • 职称 :副教授
  • 邮箱 :mali@hfut.edu.cn
  • 所属系 :信息与计算科学系
  • 主讲课程 :高等数学、分数阶微积分
  • 研究领域 :分数阶系统建模;分数阶微分/差分系统;分岔与混沌计算
教育经历
  • 2017年5月博士毕业于上海大学,专业:计算数学
    2014年6月硕士毕业于上海大学,专业:系统分析与集成
    2010年12月本科毕业于上海大学,专业:数学与应用数学
    本科期间曾赴韩国全州大学(전주대학교) 交流学习1年
    2006年6月高中毕业于安徽省明光中学
工作经历
  • 2019年12月 至今 合肥工业大学数学学院 副教授
    2017年7月-2019年12月 合肥工业大学数学学院 讲师
科研项目
  • [1] 国家自然科学基金面上项目, 在研, 主持.
    [2] 安徽省自然科学基金面上项目, 在研, 主持.
    [3] 校学术人才自主创新项目, 已结题, 主持.
    [4] 国家自然科学基金青年科学基金项目, 已结题, 主持.
    [5] 安徽省自然科学基金青年项目, 已结题, 主持.
研究成果
  • 1 Ma Li*, Zhang Wei. Finite-time stability for Caputo-Hadamard type fractional differential systems without and with proportional delays, Chaos, 2026, 36(1): 013131.(Featured Article)
    2 Ma Li*, Xu Yan. A modified Nishihara model with nonlinear time-varying viscosity via ψ-Caputo fractional derivative for salt rock, Applied Mathematical Modelling, 2026, 149: 116296.
    3 Arioua Yacine, Ma Li*. Comparison principles for Caputo-Katugampola fractional differential equations, Fractional Differential Calculus, 2026, 16(1): 165--183.
    4 Fan Dahong, Ma Li*. Asymptotic stability of linear tempered fractional difference system, Asian Journal of Control, DOI:10.1002/asjc.70011.
    5 Ma Li*, Shu Ya. Lyapunov-Schmidt reduction for Caputo-Hadamard fractional differential system, Nonlinear Dynamics, 2025, 113(21): 29107--29122.
    6 Ma Li*, Shu Ya. Center manifold reduction for Caputo-Hadamard fractional differential system, Journal of Computational and Nonlinear Dynamics, 2025, 20(9): 091001.(ASME)
    7 Ma Li*, Chen Yingjie. Analysis of Caputo-Katugampola fractional differential system, The European Physical Journal Plus, 2024, 139: 171.
    8 Ma Li*, Huang Ruoyan. Asymptotic stability and fold bifurcation analysis in Caputo-Hadamard type fractional differential system, Chinese Journal of Physics, 2024, 88: 171--197.
    9 Li Jing, Ma Li*. A unified Maxwell model with time-varying viscosity via ψ-Caputo fractional derivative coined, Chaos, Solitons & Fractals, 2023, 177: 114230.
    10 Ma Li*, Fan Dahong. On discrete tempered fractional calculus and its application, Fractional Calculus and Applied Analysis, 2023, 26(3): 1384--1420.
    11 Ma Li*, Wu Bowen. On the fractional Lyapunov exponent for Hadamard-type fractional differential system, Chaos, 2023, 33(1): 013117.(Editor’s Pick)
    12 Ma Li*, Li Jing. A bridge on Lomnitz type creep laws via generalized fractional calculus, Applied Mathematical Modelling, 2023, 116: 786--798.
    13 Ma Li*, Huang Changbao. Comparative analysis of correlation and Kaplan-Yorke dimensions for discrete-time fractional systems, International Journal of Bifurcation and Chaos, 2022, 32(15): 2250222.
    14 Ma Li*, Wu Bowen. Finite-time stability of Hadamard fractional differential equations in weighted Banach spaces, Nonlinear Dynamics, 2022, 107(4): 3749--3766.
    15 Ma Li*. Comparative analysis on the blow-up occurrence of solutions to Hadamard type fractional differential systems, International Journal of Computer Mathematics, 2022, 99(5): 895--908.
    16 Arioua Yacine, Ma Li*. On criteria of existence for nonlinear Katugampola fractional differential equations with p-Laplacian operator, Fractional Differential Calculus, 2021, 11(1): 55--68.
    17 Ma Li*, Yang Guangzhengao. Hadamard type inequalities via fractional calculus in the space of exp-convex functions and applications, Electronic Journal of Differential Equations, 2021, 2021(33): 1--18.
    18 Ma Li*, Liu Xianggang, Liu Xiaotong, Zhang Ying, Qiu Yu, Li Kaiyan. On the correlation dimension of discrete fractional chaotic systems, International Journal of Bifurcation and Chaos, 2020, 30(12): 2050174.
    19 Liu Xianggang, Ma Li*. Chaotic vibration, bifurcation, stabilization and synchronization control for fractional discrete-time systems, Applied Mathematics and Computation, 2020, 385: 125423.
    20 Ma Li*. On the kinetics of Hadamard-type fractional differential systems, Fractional Calculus and Applied Analysis, 2020, 23(2): 553--570.
    21 Ma Li*, Liu Chengcheng, Liu Ruilin, Wang Bo, Zhu Yixuan. On fractional mean value theorems associated with Hadamard fractional calculus and application, Fractional Differential Calculus, 2020, 10(2): 225--236.
    22 Ma Li*. Blow-up phenomena profile for Hadamard fractional differential systems in finite time, Fractals, 2019, 27(6): 1950093.
    23 Ma Li*. Comparison theorems for Caputo-Hadamard fractional differential equations. Fractals, 2019, 27(3): 1950036.
    24 Yin Chuntao, Ma Li, Li Changpin. Comparison principles for Hadamard-type fractional differential equations. Fractals, 2018, 26(4): 1850056.
    25 Ma Li, Li Changpin. On finite part integrals and Hadamard-type fractional derivatives. Journal of Computational and Nonlinear Dynamics, 2018, 13(9): 090905.(ASME)
    26 Ma Li, Li Changpin. On Hadamard fractional calculus. Fractals, 2017, 25(3): 1750033.
    27 Li Changpin, Ma Li. Lyapunov-Schmidt reduction for fractional differential systems. Journal of Computational and Nonlinear Dynamics, 2016, 11(5) : 051022.(ASME)
    28 Ma Li, Li Changpin. Center manifold of fractional dynamical system. Journal of Computational and Nonlinear Dynamics, 2016, 11(2): 021010.(ASME)
社会兼职
  • 担任国际期刊《International Journal of Dynamics and Control》Associate Editor;SCI期刊Fractal and Fractional客座编辑; 担任《动力学与控制学报》青年编委、《海南大学学报》(自然科学版)青年编委和兼职编辑。Journal of Nonlinear Science、Nonlinear Dynamics、Journal of Computational and Nonlinear Dynamics、Chaos、Fractional Calculus and Applied Analysis、International Journal of Bifurcation and Chaos、The European Physical Journal Plus、Journal of Computational and Applied Mathematics、International Journal of Applied Mechanics、Fractals、Chinese Journal of Physics、IEEE Transactions on Automation Science and Engineering、Mathematical Methods in the Applied Sciences、Mathematics and Computers in Simulation、Journal of Composite Materials、Chaos, Solitons & Fractals等40多本SCI期刊审稿人;《应用数学与计算数学学报》、《应用数学和力学》、《力学学报》、《动力学与控制学报》、《应用科学学报》、《应用数学进展》、《数学的实践与认识》、《信息与控制》等期刊审稿人。
    担任中国自动化学会分数阶系统与控制专业委员会委员、美国数学会评论员、中国力学学会会员、中国振动工程学会会员等。

2024年青年教师教学基本功比赛(校赛三等); 

2020届本科生优秀毕业设计(论文)指导教师;

2019年招生宣传优秀个人


欢迎数学、力学、控制等背景的同学加入FC课题组。