AbstractThis paper analyzes a certain type of impulsive differential equations (IDEs). Several useful theorems for its periodic solutions and their stabilities are given. The key idea is that a periodically time-dependent IDE can be transformed into the state-dependent IDE. As applications of our theory, the optimization problems in population dynamics are studied. That is, the maximum sustainable yields of single population models with periodically impulsive constant harvesting are discussed. Furthermore, we apply these results to the studies of the order-1 periodic solutions and their stability of a single population model with stage structure in which the mature is impulsively proportionally harvested while the immature is impulsively ad...
AbstractBased on the situation that all the recent research about state-dependent impulsive differen...
AbstractIn this paper, we employ a well-known fixed-point index theorem to study the existence and n...
AbstractBased on the predator–prey (natural enemy–pest) system with generalized Holling type III fun...
AbstractThis paper analyzes a certain type of impulsive differential equations (IDEs). Several usefu...
summary:In this paper, we propose a new impulsive predator prey model with impulsive control at diff...
summary:In this paper, we propose a new impulsive predator prey model with impulsive control at diff...
AbstractAccording to biological and chemical control strategy for pest, we investigate the dynamic b...
A theorem on estimates of solutions of impulsive parabolic equations by means of solutions of impuls...
AbstractThe dynamics of a predator–prey model with impulsive state feedback control, which is descri...
A state-dependent impulsive model is proposed for integrated pest management (IPM). IPM involves com...
AbstractIn this paper, n-impulsive harvest problems of general simple population are discussed by mo...
AbstractIn this paper, the general periodic impulsive population systems of functional differential ...
In this paper, we consider the pest management model with spraying microbial pesticide and releasing...
AbstractIn this paper, we propose two mathematical models concerning continuous and impulsive pest c...
A new pest management mathematical model with saturated growth is proposed. The integrated pest mana...
AbstractBased on the situation that all the recent research about state-dependent impulsive differen...
AbstractIn this paper, we employ a well-known fixed-point index theorem to study the existence and n...
AbstractBased on the predator–prey (natural enemy–pest) system with generalized Holling type III fun...
AbstractThis paper analyzes a certain type of impulsive differential equations (IDEs). Several usefu...
summary:In this paper, we propose a new impulsive predator prey model with impulsive control at diff...
summary:In this paper, we propose a new impulsive predator prey model with impulsive control at diff...
AbstractAccording to biological and chemical control strategy for pest, we investigate the dynamic b...
A theorem on estimates of solutions of impulsive parabolic equations by means of solutions of impuls...
AbstractThe dynamics of a predator–prey model with impulsive state feedback control, which is descri...
A state-dependent impulsive model is proposed for integrated pest management (IPM). IPM involves com...
AbstractIn this paper, n-impulsive harvest problems of general simple population are discussed by mo...
AbstractIn this paper, the general periodic impulsive population systems of functional differential ...
In this paper, we consider the pest management model with spraying microbial pesticide and releasing...
AbstractIn this paper, we propose two mathematical models concerning continuous and impulsive pest c...
A new pest management mathematical model with saturated growth is proposed. The integrated pest mana...
AbstractBased on the situation that all the recent research about state-dependent impulsive differen...
AbstractIn this paper, we employ a well-known fixed-point index theorem to study the existence and n...
AbstractBased on the predator–prey (natural enemy–pest) system with generalized Holling type III fun...