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Optimization of the Two Fishermen’s Profits Exploiting Three Competing Species Where Prices Depend on Harvest

机译:优化两个渔民的利润,开发价格依赖收获的三个竞争物种

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Bioeconomic modeling of the exploitation of biological resources such as fisheries has gained importance in recent years. In this work we propose to define and study a bioeconomic equilibrium model for two fishermen who catch three species taking into consideration the fact that the prices of fish populations vary according to the quantity harvested; these species compete with each other for space or food; the natural growth of each species is modeled using a logistic law. The main purpose of this work is to define the fishing effort that maximizes the profit of each fisherman, but all of them have to respect two constraints the first one is the sustainable management of the resources and the second one is the preservation of the biodiversity. The existence of the steady states and their stability are studied using eigenvalue analysis. The problem of determining the equilibrium point that maximizes the profit of each fisherman leads to Nash equilibrium problem; to solve this problem we transform it into a linear complementarity problem (LCP); then we prove that the obtained problem (LCP) admits a unique solution that represents the Nash equilibrium point of our problem. We close our paper with some numerical simulations.
机译:近年来,开发诸如渔业等生物资源的生物经济模型变得越来越重要。在这项工作中,我们建议为两个捕捞三种鱼类的渔民定义和研究一种生物经济平衡模型,同时考虑到鱼类种群价格随捕捞量而变化的事实。这些物种互相争夺空间或食物;每个物种的自然生长均采用逻辑定律进行建模。这项工作的主要目的是确定使每个渔民的利益最大化的捕捞努力,但所有这些捕捞者都必须尊重两个制约因素,第一个制约因素是资源的可持续管理,第二个制约因素是生物多样性的保护。使用特征值分析研究了稳态的存在及其稳定性。确定使每个渔民的利润最大化的平衡点的问题导致了纳什均衡问题;为了解决这个问题,我们将其转换为线性互补问题(LCP);那么我们证明所获得的问题(LCP)接受了一个唯一的解决方案,该解决方案代表了我们问题的Nash平衡点。我们通过一些数值模拟来结束本文。

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