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A dynamical approach to the legal and illegal logging of forestry population and conservation using taxation

机译:一种动态方法来合法和非法采伐林业人口并使用税收保护

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Over-harvesting of forestry resource, primarily trees, through illegal logging has been exceptionally regular for decades. In the context of this worldwide issue, a mathematical model considering the joined impact of legal and illegal logging of trees from forestry biomass using delay-driven ordinary differential equations is proposed. For the set of equations, we have taken immature, mature forestry biomass, and industrial densities as three state variables. Additionally, the effect of time-lag for the conversion of immature forestry biomass to mature forestry biomass is considered. System boundedness, feasible equilibrium analysis and the stability of all the feasible equilibria is examined using the differential equation theory. From the detailed analysis of the system, it is observed that with the delay in time, the system bifurcates as it reaches the critical threshold. While without the delay, the system is asymptotically stable. Biologic and bio-economic results of the system are also interpreted for the optimal equilibrium solutions. The optimal path is obtained by constructing the Hamiltonian, which is further solved using Pontryagin”s principle associated with the control problem. Further, numerical simulation is also provided in support of analytical results. Moreover, the normalized forward sensitivity index is used to analyze the parameter sensitivity.
机译:数十年来,通过非法砍伐过度采伐主要是树木的林业资源一直是很常规的。在这个世界性问题的背景下,提出了一种数学模型,该模型考虑了使用延迟驱动的常微分方程对合法和非法采伐森林生物量树木的联合影响。对于这组方程,我们将未成熟,成熟的林业生物量和工业密度作为三个状态变量。另外,考虑了时滞对未成熟林业生物量转化为成熟林业生物量的影响。利用微分方程理论研究了系统有界性,可行平衡分析和所有可行平衡的稳定性。从系统的详细分析可以看出,随着时间的延迟,系统在达到临界阈值时会分叉。在没有延迟的情况下,系统是渐近稳定的。系统的生物和生物经济结果也可以解释为最佳平衡解决方案。通过构造哈密顿量获得最佳路径,使用与控制问题相关的庞特里亚金原理进一步求解。此外,还提供了数值模拟以支持分析结果。此外,使用标准化前向灵敏度指标来分析参数灵敏度。

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