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Reconstruction analysis of honeybee colony collapse disorder modeling

机译:蜜蜂菌落塌陷障碍建模的重建分析

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摘要

The honeybee has a significant impact on industry and nature. In recent years, a mysterious disease make honeybees die, often losses reach 80-100% of the apiaries. The causal syndrome of such massive die-off is called Colony Collapse Disorder. The model adopted in the paper is constituted by a system of three ordinary differential equations that account for the change in time of the population size of the hive bees, forage workers and infected foragers. It models the condition as a contagion, transmitted by both bee-to-bee and bee-to-plant interaction. What is more, it supports both healthy and unhealthy population dynamics. We solve a parameter identification inverse problem to reconstruct the values, which are directly unobservable but vital in honeybee management. We apply an adjoint equation optimization approach to solve this inverse problem. Numerical analysis confirms the results obtained theoretically.
机译:蜜蜂对工业和自然产生了重大影响。 近年来,一个神秘的疾病使蜜蜂死亡,经常损失达到80-100%的表演者。 这种大规模芯片的因果综合征称为菌落塌陷障碍。 本文采用的模型由三个常规方程的系统构成,该系统占蜂巢蜜蜂,牧草工人和受感染的迫害者的人口大小的变化。 它模拟了作为传染性的条件,由BEE-TO-BEE和BEE - 植物相互作用传输。 更重要的是,它支持健康和不健康的人口动态。 我们解决了参数识别逆问题以重建值,这些值直接不可观察,但在蜜蜂管理中至关重要。 我们应用伴随方程优化方法来解决这个逆问题。 数值分析证实理论上获得的结果。

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