Discrete-Time Optimal Control of Species Augmentation for Predator-Prey Model

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Dasumani, Munkaila, Lenhart, Suzanne, Onyambu, Gladys K., Moore, Stephen E.
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912868087103488
author Dasumani, Munkaila
Lenhart, Suzanne
Onyambu, Gladys K.
Moore, Stephen E.
author_facet Dasumani, Munkaila
Lenhart, Suzanne
Onyambu, Gladys K.
Moore, Stephen E.
contents Species augmentation is one of the methods used to promote biodiversity and prevent endangered species loss and extinction. The current work applies discrete-time optimal control theory to two models of species augmentation for predator-prey relationships. In discrete-time models, the order in which events occur can give different qualitative results. Two models representing different orders of events of optimal augmentation timing are considered. In one model, the population grows and predator-prey action occurs before the translocation of reserve species for augmentation. In the second model, the augmentation happens first and is followed by growth and then predator-prey action. The reserve and target populations are subjected to strong Allee effects. The optimal augmentation models employed in this work aim to maximize the prey (target population) and reserve population at the final time and minimize the associated cost at each time step. Numerical simulations in the two models are conducted using the discrete version of the forward-backward sweep method and the sequential quadratic programming iterative method, respectively. The simulation results show different population levels in the two models under varying parameter scenarios. Objective functional values showing percentage increases with optimal controls are calculated for each simulation. Different optimal augmentation strategies for the two orders of events are discussed. This work represents the first optimal augmentation results for models incorporating the predator-prey relationship with discrete events.
format Preprint
id arxiv_https___arxiv_org_abs_2601_13394
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Discrete-Time Optimal Control of Species Augmentation for Predator-Prey Model
Dasumani, Munkaila
Lenhart, Suzanne
Onyambu, Gladys K.
Moore, Stephen E.
Optimization and Control
34H05, 49J15, 49K15, 93C15
Species augmentation is one of the methods used to promote biodiversity and prevent endangered species loss and extinction. The current work applies discrete-time optimal control theory to two models of species augmentation for predator-prey relationships. In discrete-time models, the order in which events occur can give different qualitative results. Two models representing different orders of events of optimal augmentation timing are considered. In one model, the population grows and predator-prey action occurs before the translocation of reserve species for augmentation. In the second model, the augmentation happens first and is followed by growth and then predator-prey action. The reserve and target populations are subjected to strong Allee effects. The optimal augmentation models employed in this work aim to maximize the prey (target population) and reserve population at the final time and minimize the associated cost at each time step. Numerical simulations in the two models are conducted using the discrete version of the forward-backward sweep method and the sequential quadratic programming iterative method, respectively. The simulation results show different population levels in the two models under varying parameter scenarios. Objective functional values showing percentage increases with optimal controls are calculated for each simulation. Different optimal augmentation strategies for the two orders of events are discussed. This work represents the first optimal augmentation results for models incorporating the predator-prey relationship with discrete events.
title Discrete-Time Optimal Control of Species Augmentation for Predator-Prey Model
topic Optimization and Control
34H05, 49J15, 49K15, 93C15
url https://arxiv.org/abs/2601.13394