A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting

The paper examines the fish population dynamics of a delay logistic model with restrictions on harvesting in a deterministic environment. This is the first time an autonomous model with a harvesting function has been created to regulate the harvesting of fish. The goal of the study is to help extern...

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Main Author: Martin Anokye
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Journal of Mathematics
Online Access:http://dx.doi.org/10.1155/2024/6263903
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author Martin Anokye
author_facet Martin Anokye
author_sort Martin Anokye
collection DOAJ
description The paper examines the fish population dynamics of a delay logistic model with restrictions on harvesting in a deterministic environment. This is the first time an autonomous model with a harvesting function has been created to regulate the harvesting of fish. The goal of the study is to help external regulatory bodies manage fishing harvests and replenish fish stocks. The dynamics scenario mirrors the facts of fishing systems and enhances the research that has already been done. Two restriction conditions are employed. In the event that the agency detects overfishing, all fish harvesting is prohibited, with the fishing control parameter raised in order to bring the fish back to full stock, while the catchability coefficient is set to zero. However, if the system is designed so that harvesting is carried out in accordance with the fish’s sustainable growth level, then we have the partial restriction condition where no ban is imposed on fishing. This model’s practical benefit is its adaptability; it may be redesigned to suit any physical system whose functioning is comparable to this phenomenon. As a result, it is advised that the regulatory bodies use the model to manage the fish stock.
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issn 2314-4785
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spelling doaj-art-faa749e22437446dbda52621314ebc0f2025-02-02T23:14:13ZengWileyJournal of Mathematics2314-47852024-01-01202410.1155/2024/6263903A Logistic Growth Model with Discrete-Time Delay and a Restriction on HarvestingMartin Anokye0Department of MathematicsThe paper examines the fish population dynamics of a delay logistic model with restrictions on harvesting in a deterministic environment. This is the first time an autonomous model with a harvesting function has been created to regulate the harvesting of fish. The goal of the study is to help external regulatory bodies manage fishing harvests and replenish fish stocks. The dynamics scenario mirrors the facts of fishing systems and enhances the research that has already been done. Two restriction conditions are employed. In the event that the agency detects overfishing, all fish harvesting is prohibited, with the fishing control parameter raised in order to bring the fish back to full stock, while the catchability coefficient is set to zero. However, if the system is designed so that harvesting is carried out in accordance with the fish’s sustainable growth level, then we have the partial restriction condition where no ban is imposed on fishing. This model’s practical benefit is its adaptability; it may be redesigned to suit any physical system whose functioning is comparable to this phenomenon. As a result, it is advised that the regulatory bodies use the model to manage the fish stock.http://dx.doi.org/10.1155/2024/6263903
spellingShingle Martin Anokye
A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
Journal of Mathematics
title A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
title_full A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
title_fullStr A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
title_full_unstemmed A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
title_short A Logistic Growth Model with Discrete-Time Delay and a Restriction on Harvesting
title_sort logistic growth model with discrete time delay and a restriction on harvesting
url http://dx.doi.org/10.1155/2024/6263903
work_keys_str_mv AT martinanokye alogisticgrowthmodelwithdiscretetimedelayandarestrictiononharvesting
AT martinanokye logisticgrowthmodelwithdiscretetimedelayandarestrictiononharvesting