王金良(黑大教授)

时间:2023-12-29 20:05:42编辑:影视君

王金良(黑大教授)的个人简介

黑龙江大学数学科学学院副教授,硕士生导师。主要研究领域:动力系统,微分方程,生物数学。

研究领域

应用动力系统,数学流行病学,生物数学,种群动力学

教育经历

2008年09月--2011年11月哈尔滨工业大学基础数学专业,获得理学博士学位,导师为刘胜强教授。

2005年09月--2008年07月 黑龙江大学基础数学专业,获得理学硕士学位,导师为曹重光教授。

2001年09月--2005年07月哈尔滨师范大学数学与应用数学专业,获得理学学士学位。

工作经历

2014年09月-- 至今黑龙江大学数学科学学院副教授。

2013年07月-- 至今 黑龙江大学数学科学学院硕士生导师。

2011年12月-- 至今黑龙江大学数学科学学院讲师。

学术交流经历

2014年9月,加拿大西安大略大学应用数学系,访问学者,合作导师:邹幸福教授。

科研论文

[1] Jinliang Wang*, Shengqiang Liu and Yasuhiro Takeuchi, Threshold dynamics in a periodic sveir epidemic model, International Journal of Biomathematics, 4(4), (2011),493-509.

[2] Jinliang Wang*, Gang Huang, Yasuhiro Takeuchi and Shengqiang Liu, Sveir epidemiological model with varying infectivity and distributed delays, Mathematical Biosciences and Engineering, 8(3), (2011), 875-888.

[3] Jinliang Wang*, Gang Huang and Yasuhiro Takeuchi, Global asymptotic stability for HIV-1 dynamics with two distributed delays, Mathematical Medicine and Biology, 29(3), (2012), 283-300. (SCI, 2012IF 2.412)

[4] Jinliang Wang*, Shengqiang Liu, Baowen Zheng and Yasuhiro Takeuchi, Qualitative and bifurcation analysis using an SIR model with a saturated treatment function, Mathematical and Computer Modelling, 55, (2012), 710-722.

[5] Jinliang Wang* and Lijuan Guan, Global stability for a HIV-1 infection model with cell-mediated immune response and intracellular delay, Discrete and Continuous Dynamical Systems Series B, 17(1), (2012), 297-302.

[6] Jinliang Wang*, Yasuhiro Takeuchi and Shengqiang Liu, A multi-group sveir epidemic model with distributed delay and vaccination,International Journal of Biomathematics, 5(3), (2012), 1260001.

.[7] Jian Zu*, Jinliang Wang and Yasuhiro Takeuchi, Coevolutionary dynamics of predator-prey interactions, International Journal of Biomathematics, 5(3), (2012),1260015.

[8] Jinliang Wang*, Jian Zu, Xianning Liu, Gang Huang and Jimin Zhang, Global dynamics of a multi-group epidemic model with general relapse distribution and nonlinear incidence rate, Journal of Biological Systems, 20(3), 2012, 235-258.

[9] Jimin Zhang, Xiaoyuan Chang* and Jinliang Wang, Existence and robustness of nonuniform (h,k,mu,u)-dichotomies for nonautonomous impulsive differential equations, Journal of Mathematical Analysis and Applications, 400, (2013), 710-723.

[10] Jinliang Wang*, Xinxin Tian,Global stability of a delay differential equation of hepatitis B virus infection with immune response, Electronic Journal of Differential equations, Vol. 2013 (2013), No. 94, pp. 1-11.

[11] Ling Zhang, Jingmei Pang and Jinliang Wang*, Stability analysis of a multi-group epidemic model with general exposed distribution and nonlinear incidence rates, Abstract and Applied Analysis, 2013 (2013), Article ID 354287, 11 pages.

[12] Jian Zu* and Jinliang Wang*, Adaptive evolution of attack ability promotes the evolutionary branching of predator species, Theoretical Population Biology, 89, (2013), 12-23.

[13] Zhenjie Liu*, Jinliang Wang, Yalan Xu and Guoqiang Li, Dynamic analysis of an SIR model with stochastic perturbations, International Journal of Biomathematics, 6(6), 2013,1350041, 15 pages, DOI: 10.1142/S1793524513500411.

[14] Jinliang Wang*, Jingmei Pang and Toshikazu Kuniya, A note on global stability for malaria infections model with latencies, Mathematical Biosciences and Engineering, 11(4), (2014), 995-1001.

[15] Nan Wang, Jingmei Pang and Jinliang Wang*, Stability analysis of a multi-group SEIR epidemic model with general latency distributions, Abstract and Applied Analysis, 2014 (2014), Article ID 740256, 8 pages.

[16] Jinliang Wang*, Jingmei Pangand Xianning Liu, Modeling diseases with relapse and nonlinear incidence of infection: a multi-group epidemic model, Journal of Biological Dynamics, 8 (1), (2014), 99-116.

[17] Jian Zu*, Jinliang Wang* and Jianqiang Du, Adaptive evolution of defense ability leads to diversification of prey species, Acta Biotheoretica, 62(2), (2014), 207-234.

[18] Jinliang Wang,Jingmei Pang,Toshikazu Kuniya and Yoichi Enatsu*, Global threshold dynamics in a five-dimensional virus model with cell-mediated, humoral immune responses and distributed delays, Applied Mathematics and Computation, 241 (2014),298-316.

[19] Haitao Song*, Shengqiang Liu, Weihua Jiang and Jinliang Wang, Global stability and periodic oscillations for an SIV infection model with immune response and intracellular delays, Applied Mathematical Modelling,38(24) (2014), 6108-6121.

[20] Gang Huang,Jinliang Wang* and Jian Zu, Global dynamics of multi-group dengue disease model with latency distributions, Mathematical Methods in the Applied Sciences, 38(13) (2015),2703-2718.

[21] Xinxin Tian and Jinliang Wang*,Stability analysis for viral infection model with multitarget cells, Beddington-DeAngelis functional response and humoral immunity, Discrete Dynamics in Nature and Society, 2015 (2015), Article ID 654507, 11 pages.

[22] Jinliang Wang*, Xianning Liu, Jingmei Pang and Dongmei Hou, Global dynamics of a multi-group epidemic model with general exposed distribution and relapse, Osaka Journal of Mathematics, 52 (2015), 117-138.

[23] Jinliang Wang and Shengqiang Liu*, The stability analysis of a general viral infection model with distributed delays and multi-staged infected progression, Communications in Nonlinear Science and Numerical Simulation, 20(1), (2015), 263-272.

[24]Yoshiaki Muroya*,Toshikazu Kuniya andJinliang Wang,Stability analysis of a delayed multi-group SIS epidemic model with nonlinear incidence rates and patch structure,Journal of Mathematical Analysis and Applications,425 (2015), 415-439.

[25]Lili Liu, Jinliang Wang, Xianning Liu*, Global stability properties for an SEIR epidemic model with age-dependent latency and relapse,Nonlinear Analysis: Real World Applications, 24 (2015), 18-35.

[26]Jinliang Wang*, Ran Zhang and Toshikazu Kuniya, The stability analysis of an SVEIR model with continuous age-structure in the exposed and infectious classes, Journal of Biological Dynamics,9(1) (2015), 73-101. (SCI, 2014IF 1.033)

[27]Jinliang Wang, Ran Zhang and Toshikazu Kuniya*, Mathematical analysis for an age-structured HIV infection model with saturation infection rate,Electronic Journal of Differential Equations,2015 (33), (2015), 1-19.

[28]Jinliang Wang,Yoshiaki MuroyaandToshikazu Kuniya*,Global stability of a time-delayed multi-group SIS epidemic model with nonlinear incidence rates and patch structure, The Journal of Nonlinear Science and Applications, 8(5) , (2015), 575-599.

[29] Jinliang Wang*, Jiying Lang, Xianning Liu, Global dynamics for viral infection model with Beddington-DeAngelis functional response and an eclipse stage of infected cells,Discrete and Continuous Dynamical Systems Series B,20(9) , (2015), 3215-3233.

[30] Jinliang Wang, Ran Zhang and Toshikazu Kuniya*, Global dynamics for a class of age-infection HIV models with nonlinear infection rate, Journal of Mathematical Analysis and Applications, 432 (2015), 289-313.

[31] Jinliang Wang, Kaifa Wang*, Zhichao Jiang,Dynamical behaviors of an HTLV-I infection model with intracellular delay and immune activation delay, Advances in Difference Equations, 2015:243, (2015).

[32] Yoichi Enatsu, Jinliang Wang, Toshikazu Kuniya, Effect of cell-mediated, humoral immune responses on global dynamics of a delayed virus infection model, Qualitative theory of ordinary differential equations in real domains and its applications (Kyoto, 2014), RIMS Kokyuroku, 1959 (2015), 83-107.

[33]Feng Li and Jinliang Wang*, Analysis of an HIV infection model with logistic target-cell growth and cell-to-cell transmission, Chaos,Solitons&Fractals, 81 (2015) , 136-145.

[34] Jinliang Wang, Hongying Shu*, Global dynamics of a multi-group epidemic model with latency, relapse and nonlinear incidence rate, Mathematical Biosciences and Engineering,13(1) (2016) , 209-225.

[35] Jinliang Wang*, Ran Zhang and Toshikazu Kuniya, A note on dynamics of an age-of-infection cholera model, Mathematical Biosciences and Engineering,13(1) (2016) , 227-247.

[36]Jinliang Wang, Xinxin Tian and Xia Wang*, Stability analysis for delayed viral infection model with multitarget cells and general incidence rate, International Journal of Biomathematics,9(1), (2016),1650007 (21pages).

[37] Jinliang Wang and Xianning Liu*, Modeling diseases with latency and nonlinear incidence rates: global dynamics of a multi-group model, Mathematical Methods in the Applied Sciences.

[38]Jinliang Wang, Jiying Lang and Feng Li*,Constructing Lyapunov functionals for a delayed viral infection model with multitargetcells, nonlinear incidence rate, state-dependent removal rate,The Journal of Nonlinear Science and Applications,9 (2016), 524-536.

[39] Haitao Song*, Jinliang Wang and Weihua Jiang, Global dynamics in a multi-group epidemic model for disease with latency spreading and nonlinear transmission, Journal of Applied Analysis and Computation,6(1) (2016), 47-64.

出版著作

《数学物理方程》, 2014.06,黑龙江大学出版社

科研项目

1.国家自然科学基金天元基金项目,项目编号:11226255,空间异质流行病模型的Lyapunov稳定性研究, 2013.01--2013.12.

2.省教育厅科学技术研究项目面上项目,项目编号:12531495,白血病病毒感染模型的动力学性质研究, 2013.1―2014.6.

3.国家自然科学基金青年基金项目,项目编号:11401182,年龄结构的传染病模型的全局性态研究, 2015-01--2017-12.

4.省自然科学基金面上项目,项目编号:A201415,多族群传染病模型的Lyapunov函数构造及稳定性分析, 2014.07--2016.07.

5.中国博士后科学基金第55批面上资助,项目编号:2014M552295,具有年龄结构的传染病模型的稳定性研究, 2014.05―2015.03.

6.2014年重庆市博士后科研项目特别资助,项目编号:Xm2014024,年龄结构传染病模型的建模及稳定性研究, 2014.7--2015.7.

7.黑龙江大学青年科学基金项目, 2013.1-2013.12.

8.黑龙江大学杰出青年科学基金项目, 2015.1-2017.12.

参与的科研项目:

9.国家自然科学基金面上项目(协作),项目编号:11471089,流动人口对新兴传染病防控影响的数学建模与研究, 2015.01―2018.12.

10.国家自然科学基金青年基金项目,项目编号:11201128,非一致双曲测度链动力系统稳定性的若干问题, 2013-01―2015-12.

11.省自然科学基金面上项目,项目编号:A20121,某些分段连续型偏微分方程的数值分析, 2013.01-2015.12.

人才基金情况:

12. 2013年黑龙江省地方属本科高校战略后备人才出国研修项目, 2014.9--2015.8.

13. 2015年黑龙江省普通本科高等学校青年创新人才培养计划,2015.6--2017.6.

组织会议

Local Organizer, International Workshop on Biomathematics Modelling and Its Dynamicl Analysis, Heilongjiang University, Harbin, China , Jan. 11―13, 2014.Co-organizer, Mini-Symposium "Lyapunov Function Method in Mathematical Biology" in 8th International Congress on Industrial and Applied Mathematics (ICIAM 2015), Beijing, China, AUG. 11-14, 2015.Local Organizer, The Second International Workshop on Biomathematics Modelling and Its Dynamicl Analysis, Heilongjiang University, Harbin, China , AUG. 15―17, 2015.

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