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Plant disease detection and diagnosis based on the theory of acoustic holography

机译:基于声全息理论的植物病害检测与诊断

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Based on the theory of Near field Acoustical Holography (NAH), the mechanism of the plant generating ultrasonic sound resource signal is discussed under the condition of the plant in the condition of disease stress. By the two-dimensional FFT transform to redesign its three-dimensional sound field model, the multifactor synthesis mathematical mechanism model will be established, which describes the relationship among sound resource signal, disease forecast, disease species, pathological changes position, disease degree, transpiration quantity, soil moisture, atmospheric saturation degree, air temperature, illumination and so on. The quantitative relationship between disease degree and plant's physiological state is determined. Both the mathematic model for disease forecast of the primary crops (such as tomato and wheat), and the the simulated model and the optimal control algorithm for automatic pesticide spraying are discussed. As a result, the theory of Acoustical Holography application and research will be expanded in the field of plant physiology and protection of plant. Through experiments and optimal control algorithm, we can exploit a new approach for signal detection of plant physiology and integrated accurate prevention and cure of crop disease.
机译:基于近场声全息术(NAH)理论,探讨了植物在病害胁迫条件下产生超声资源信号的机理。通过二维FFT变换重新设计其三维声场模型,将建立多因素综合数学机制模型,该模型描述了声源信号,疾病预测,疾病种类,病理变化位置,疾病程度,蒸腾作用之间的关系。数量,土壤湿度,大气饱和度,气温,照度等。确定了疾病程度与植物生理状态之间的定量关系。讨论了主要农作物(如番茄和小麦)病害预测的数学模型,以及自动农药喷洒的仿真模型和最优控制算法。因此,声全息技术的应用和研究理论将在植物生理学和植物保护领域得到扩展。通过实验和最优控制算法,我们可以探索一种新的植物生理信号检测方法,并综合准确地防治作物病害。

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