Optimizing Impulsive Releases: A Species Competition Model

Fuente: arXiv
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Autori principali: Alves, Jéssica C. S., Oliva, Sergio M., Schaerer, Christian E.
Natura: Preprint
Pubblicazione: 2025
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author Alves, Jéssica C. S.
Oliva, Sergio M.
Schaerer, Christian E.
author_facet Alves, Jéssica C. S.
Oliva, Sergio M.
Schaerer, Christian E.
contents This study focuses on optimizing species release $S_2$ to control species population $S_1$ through impulsive release strategies. We investigate the conditions required to remove species $S_1$, which is equivalent to the establishment of $S_2$. The research includes a theoretical analysis that examines the positivity, existence, and uniqueness of solutions, the conditions ensuring global stability, and a sufficient condition for controlling the $S_1$-free solution. In addition, we formulate an optimal control problem to maximize the effectiveness of $S_2$ releases, manage the population of $S_1$, and minimize the costs associated with this intervention strategy. Numerical simulations are conducted to validate the proposed theories and allow visualization of population dynamics under various release scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2502_01879
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimizing Impulsive Releases: A Species Competition Model
Alves, Jéssica C. S.
Oliva, Sergio M.
Schaerer, Christian E.
Optimization and Control
Populations and Evolution
92D25 (primary), 49N25, 34C60 (secondary)
This study focuses on optimizing species release $S_2$ to control species population $S_1$ through impulsive release strategies. We investigate the conditions required to remove species $S_1$, which is equivalent to the establishment of $S_2$. The research includes a theoretical analysis that examines the positivity, existence, and uniqueness of solutions, the conditions ensuring global stability, and a sufficient condition for controlling the $S_1$-free solution. In addition, we formulate an optimal control problem to maximize the effectiveness of $S_2$ releases, manage the population of $S_1$, and minimize the costs associated with this intervention strategy. Numerical simulations are conducted to validate the proposed theories and allow visualization of population dynamics under various release scenarios.
title Optimizing Impulsive Releases: A Species Competition Model
topic Optimization and Control
Populations and Evolution
92D25 (primary), 49N25, 34C60 (secondary)
url https://arxiv.org/abs/2502.01879