Optimal harvesting for a logistic growth model with predation and a constant elasticity of variance

In this paper, we address the problem of optimal management of renewable resources such as agricultural commodities and fishery production. For that purpose, we consider the population associated with such commodities and assume that its size evolves according to a logistic growth model with a preda...

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Published inAnnals of operations research Vol. 260; no. 1-2; pp. 461 - 480
Main Author Pinheiro, S.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.01.2018
Springer
Springer Nature B.V
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Abstract In this paper, we address the problem of optimal management of renewable resources such as agricultural commodities and fishery production. For that purpose, we consider the population associated with such commodities and assume that its size evolves according to a logistic growth model with a predation term given by a Holling type- n functional response. Additionally, we assume that such population is subject to random fluctuations, modeled by a diffusive term driven by a one-dimensional Brownian motion and having a power-type coefficient, thus endowing the model under consideration with the property of having constant elasticity of variance. Since the stochastic differential equation associated with this model does not fit the standard assumptions in the stochastic optimal control literature, namely sublinear growth, we develop an appropriate version of the dynamic programming principle for the problem under consideration herein, proceeding also to provide a characterization of the optimal harvesting strategies and discuss some qualitative properties of the corresponding value function.
AbstractList In this paper, we address the problem of optimal management of renewable resources such as agricultural commodities and fishery production. For that purpose, we consider the population associated with such commodities and assume that its size evolves according to a logistic growth model with a predation term given by a Holling type- n functional response. Additionally, we assume that such population is subject to random fluctuations, modeled by a diffusive term driven by a one-dimensional Brownian motion and having a power-type coefficient, thus endowing the model under consideration with the property of having constant elasticity of variance. Since the stochastic differential equation associated with this model does not fit the standard assumptions in the stochastic optimal control literature, namely sublinear growth, we develop an appropriate version of the dynamic programming principle for the problem under consideration herein, proceeding also to provide a characterization of the optimal harvesting strategies and discuss some qualitative properties of the corresponding value function.
In this paper, we address the problem of optimal management of renewable resources such as agricultural commodities and fishery production. For that purpose, we consider the population associated with such commodities and assume that its size evolves according to a logistic growth model with a predation term given by a Holling type-n functional response. Additionally, we assume that such population is subject to random fluctuations, modeled by a diffusive term driven by a one-dimensional Brownian motion and having a power-type coefficient, thus endowing the model under consideration with the property of having constant elasticity of variance. Since the stochastic differential equation associated with this model does not fit the standard assumptions in the stochastic optimal control literature, namely sublinear growth, we develop an appropriate version of the dynamic programming principle for the problem under consideration herein, proceeding also to provide a characterization of the optimal harvesting strategies and discuss some qualitative properties of the corresponding value function.
Audience Academic
Author Pinheiro, S.
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crossref_primary_10_3390_sym13040570
crossref_primary_10_1002_oca_2510
crossref_primary_10_1142_S0219477520500327
crossref_primary_10_1002_asmb_2428
crossref_primary_10_1007_s10287_017_0286_5
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Copyright Springer Science+Business Media New York 2016
COPYRIGHT 2018 Springer
Annals of Operations Research is a copyright of Springer, (2016). All Rights Reserved.
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Issue 1-2
Keywords Optimal harvesting
Agricultural commodities
Population dynamics
Stochastic optimal control
Language English
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SubjectTerms Agricultural commodities
Agricultural management
Brownian motion
Business and Management
Business logistics
Combinatorics
Commodities
Differential equations
Dynamic programming
Economic models
Elasticity
Elasticity (Economics)
Fisheries
Growth models
Harvesting
Management
Operations research
Operations Research/Decision Theory
Optimal control
Predation
Renewable resources
Resource management
S.I.: Advances of OR in Commodities and Financial Modelling
Theory of Computation
Variance
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Title Optimal harvesting for a logistic growth model with predation and a constant elasticity of variance
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