Related Experiment Video
Updated: Jul 31, 2025

Generating Controlled, Dynamic Chemical Landscapes to Study Microbial Behavior
Published on: January 31, 2020
Dynamic analysis of a phytoplankton-fish model with the impulsive feedback control depending on the fish density and
Huidong Cheng1,2, Hui Xu2, Jingli Fu1,3
1College of Information and Control Engineering, Shandong Foreign Affairs Vocational University, Weihai 264504, China.
Abstract:
This paper proposes and studies a comprehensive control model that considers fish population density and its current growth rate, providing new ideas for fishing strategies. First, we established a phytoplankton-fish model with state-impulse feedback control based on fish density and rate of change. Secondly, the complex phase sets and impulse sets of the model are divided into three cases, then the Poincaré map of the model is defined and its complex dynamic properties are deeply studied. Furthermore, some necessary and sufficient conditions for the global stability of the fixed point (order-1 limit cycle) have been provided even for the Poincaré map. The existence conditions for periodic solutions of order-k(k≥2) are discussed, and the influence of dynamic thresholds on system dynamics is shown. Dynamic thresholds depend on fish density and rate of change, i.e., the form of control employed is more in line with the evolution of biological populations than in earlier studies. The analytical method presented in this paper also plays an important role in analyzing impulse models with complex phase sets or impulse sets.
Related Concept Videos
Time-Domain Interpretation of PD Control
Consider the example of control of motor torque. Initially, a positive...
Poisson's And Laplace's Equation
Typical Model Studies
Damped Oscillations
Although friction and other non-conservative...
The Integrated Rate Law: The Dependence of Concentration on Time

