Jianjun Jiao
Guizhou University of Finance and Economics
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Publication
Featured researches published by Jianjun Jiao.
Physica A-statistical Mechanics and Its Applications | 2016
Jianjun Jiao; Shaohong Cai; Limei Li
Abstract To understand the effect of impulsive vaccination and restricting infected individuals boarding transports on disease spread, we establish an SIR model with impulsive vaccination, impulsive dispersal and restricting infected individuals boarding transports. This SIR epidemic model for two regions, which are connected by transportation of non-infected individuals, portrays the evolvement of diseases. We prove that all solutions of the investigated system are uniformly ultimately bounded. We also prove that there exists globally asymptotically stable infection-free boundary periodic solution. The condition for permanence is discussed. It is concluded that the approach of impulsive vaccination and restricting infected individuals boarding transports provides reliable tactic basis for preventing disease spread.
Journal of The Franklin Institute-engineering and Applied Mathematics | 2016
Jianjun Jiao; Shaohong Cai; Limei Li
Abstract Winter hibernation constitutes an effective strategy of animals in order to correspond survive cold environments and limited availability of food, it plays an important role in biological evolution. In this work, we firstly introduce hibernation behaviors of prey population into predator–prey systems with impulsive effect, then construct a periodic switched predator–prey system with winter hibernation in prey population and impulsive effect. We prove that the solutions of system (2.1) are uniformly ultimately bounded. We obtain the conditions of the globally asymptotically stable predator-extinction boundary periodic solution of system (2.1) , and also obtain the permanent conditions of system (2.1) . Finally, numerical analysis is employed to illustrate the results. Our results provide reliable tactic for the biological economics management and the protection of biodiversity.
Advances in Difference Equations | 2012
Jianjun Jiao; Lansun Chen; Shaohong Cai
In this study, we consider a biological resource management predator-prey model with impulsive releasing and harvesting at different moments. First, we prove that all solutions of the investigated system are uniformly ultimately bounded. Second, the conditions of the globally asymptotic stability predator-extinction boundary periodic solution are obtained. Third, the permanence condition of the investigated system is also obtained. Finally, the numerical simulation verifies our results. These results provide reliable tactic basis for the biological resource management in practice.
International Journal of Biomathematics | 2016
Jianjun Jiao; Shaohong Cai; Yujuan Zhang; Limei Li
In this work, we construct a stage-structured single population system with winter hibernation and impulsive effect in polluted environment. All solutions of the investigated system are proved to be uniformly ultimately bounded. The conditions of the population-extinction solution of the investigated system are obtained. The permanent condition of the investigated system is also obtained. Finally, numerical analysis is inserted to illustrate the results. Our results indicate that the environmental pollution will reduce biological diversity of the natural world. Our results also provide reliable tactic basis for the practical biological resource management.
Advances in Difference Equations | 2012
Jianjun Jiao; Lansun Chen; Shaohong Cai
Coupling with social progress, traffic development and so on, the natural environment is going into patches. There are differences between population in differential patches. The population living in a patchy environment is affected by the space structures. It is important to depict the dynamical behaviors of the population in the present world. In this work, a state-dependent impulsive differential model, which focuses on impulsively unilateral diffusion between two patches, aims for the simulation of the factual population dynamical behaviors. With the approaches of mathematical analysis, we obtain sufficient conditions of the existence and orbitally asymptotic stability of a periodic solution of the investigated system. Finally, the numerical simulations verify our results.
Advances in Difference Equations | 2015
Shaohong Cai; Jianjun Jiao; Limei Li
Journal of Applied Mathematics and Computing | 2011
Jianjun Jiao; Shaohong Cai; Lansun Chen
Journal of Applied Mathematics and Computing | 2017
Jianjun Jiao; Shaohong Cai; Lansun Chen
Advances in Difference Equations | 2016
Airen Zhou; Pairote Sattayatham; Jianjun Jiao
Journal of Applied Mathematics and Computing | 2012
Jianjun Jiao; Shaohong Cai; Lansun Chen