陈灿
  • 单位:郑州航空工业管理学院   数学学院
  • 职称:教师
  • 出生:1989年2月
  • 性别:女

生物数学、传染病动力学模型


论文与著作

(1)Can Chen, Pengde Wang, Litao Zhang, A two-thresholds policy for a Filippov model in combating influenza, Journal of Mathematical Biology , 2020, 81:435–461.(SCI)

(2)Jianfeng Jiao, Can Chen, Bogdanov-Takens bifurcation analysis of a delayed predator-prey system with double Allee effect, Nonlinear Dynamics, https://doi.org/10.1007/s11071-021-06338-x.(SCI)

(3) Can Chen, Xi Chen, Rich sliding motion and dynamics in a Filippov plant-disease system, International Journal of Bifurcation and Chaos, 2018, 28(1): 1850012-1-18.(SCI) 

(4) Can Chen, Nyuk Sian Chong, Robert Smith, A Filippov model describing the effects of media coverage and quarantine on the spread of human influenza, Mathematical Biosciences, 2017, 296: 98-112. (SCI) 

(5) Can Chen, Chentong Li, Yanmei Kang, Modelling the effects of cutting off infected branches and replanting on fire-blight transmission using Filippov systems, Journal of Theoretical Biology, 2017, 439: 127-140. (SCI) 

(6) Can Chen, Yanmei Kang, Robert Smith, Sliding motion and global dynamics of a Filippov fire-blight model with economic thresholds, Nonlinear Analysis: Real World Applications, 2017, 39: 492-519. (SCI) 

(7) Can Chen, Yanmei Kang, Dynamics of a stochastic multi-strain SIS epidemic model driven by Lévy noise, Communications in Nonlinear Science and Numerical Simulation, 2016, 42: 379-395. (SCI) 

(8) Can Chen, Yanmei Kang, The asymptotic behavior of a stochastic vaccination model with backward bifurcation, Applied Mathematical Modelling, 2016, 40: 6051-6068. (SCI) 

(9) Can Chen, Yanmei Kang, Dynamics of a stochastic SIS epidemic model with saturated incidence, Abstract and Applied Analysis, 2014, Article ID 414383. (SCI) 

(10) Can Chen, Yanni Xiao, Modeling saturated diagnosis and vaccination in reducing HIV/AIDS infection, Abstract and Applied Analysis, 2014, Article ID 723825. (SCI) 


荣誉与奖励

1.基于多阈值策略和随机扰动的传染病模型研究及其应用.国家自然科学基金青年科学基金. 2019.01-2021.12,主持,在研。

2.基于阈值控制策略的传染病模型研究及其应用. 河南省高等学校重点科研项目. 2019.01-2020.12,主持,结项。