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APHIDSim: A population dynamics model for wheat aphids based on swallowtail catastrophe theory

机译:APHIDSim:基于燕尾突变理论的小麦蚜虫种群动态模型

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Controlling aphids is vital since they are serious pests of wheat as well as many agricultural crops in the world. To avoid adverse effects of total reliance on chemical insecticides so as to ensure the ecological well balance of the agricultural ecosystems, there is a need to have eco-friendly control measures like biological control. For this, a good understanding of their population dynamics is critically important. Though there are several criticisms, a number of experiments have been conducted to develop forecasting models or expert systems for identifying the population, rates of growth or the damage. Those models are based on a number of mathematical models, including catastrophe theory, especially the cusp model. However, many of them are limited to the theoretical models but not to the practical systems or software. This study is aimed to analyze population dynamics of wheat aphids and to build a computer program (APHIDSim) integrating the swallowtail catastrophe theory. We built a swallowtail model from the aphid population as a function of three controlling factors: weather, crop and natural enemy in order to analyze the swallowtail behavior of population dynamics of wheat aphids. The APHIDSim is implemented integrating the swallowtail model and analyzed aphid population data for swallowtail behavior. The results show that the increase of wheat aphid population (population dynamics) is essentially a catastrophic behavior and sudden jumps may occur from one state to another even though the control factors change smoothly.
机译:控制蚜虫至关重要,因为它们是小麦以及世界上许多农作物的严重害虫。为了避免完全依赖化学杀虫剂的不利影响,以确保农业生态系统的生态良好平衡,需要采取生态友好的控制措施,例如生物防治。为此,对他们的人口动态有很好的了解至关重要。尽管有一些批评,但已经进行了许多实验来开发预测模型或专家系统,以识别人口,增长率或破坏。这些模型基于许多数学模型,包括巨变理论,尤其是尖点模型。但是,它们中的许多仅限于理论模型,而不仅限于实际系统或软件。这项研究旨在分析小麦蚜虫的种群动态,并建立一个结合燕尾巨灾理论的计算机程序(APHIDSim)。为了分析小麦蚜虫种群动态的燕尾行为,我们根据蚜虫种群的燕尾模型建立了三个控制因素的函数:天气,作物和天敌。 APHIDSim集成了燕尾模型并分析了蚜虫种群数据的燕尾行为。结果表明,小麦蚜虫种群的增加(种群动态)本质上是灾难性的行为,即使控制因素变化平稳,也可能从一种状态突然突变为另一种状态。

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