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Direct coupling: a possible strategy to control fruit production in alternate bearing

机译:直接耦合:在备用轴承中控制水果产量的可能策略

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摘要

We investigated the theoretical possibility of applying phenomenon of synchronization of coupled nonlinear oscillators to control alternate bearing in citrus. The alternate bearing of fruit crops is a phenomenon in which a year of heavy yield is followed by an extremely light one. This phenomenon has been modeled previously by the resource budget model, which describes a typical nonlinear oscillator of the tent map type. We have demonstrated how direct coupling, which could be practically realized through grafting, contributes to the nonlinear dynamics of alternate bearing, especially phase synchronization. Our results show enhancement of out-of-phase synchronization in production, which depends on initial conditions obtained under the given system parameters. Based on these numerical experiments, we propose a new method to control alternate bearing, say in citrus, thereby enabling stable fruit production. The feasibility of validating the current results through field experimentation is also discussed.
机译:我们研究了应用耦合非线性振荡器的同步现象来控制柑橘的交替方位的理论可能性。果农轮作是一种现象,在这种现象中,一年的高产量之后又是极轻的一年。此现象先前已通过资源预算模型进行建模,该模型描述了帐篷图类型的典型非线性振荡器。我们已经证明了直接耦合(实际上可以通过嫁接实现)如何有助于交替轴承的非线性动力学,尤其是相位同步。我们的结果表明,生产中异相同步的增强,这取决于在给定系统参数下获得的初始条件。基于这些数值实验,我们提出了一种新的方法来控制柑橘中的交替方位,从而实现稳定的水果产量。还讨论了通过现场实验验证当前结果的可行性。

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