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Smart irrigation system for the reinforcement of Precision agriculture using prediction algorithm: SVR based smart irrigation

机译:使用预测算法加固精密农业的智能灌溉系统:基于SVR的智能灌溉

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This paper explains the improvements in Precision agriculture interfaced with Iot applications. The dearth of water resources across the globe has provoked the need of optimum utilization. To scheduled irrigation process some constraints have to be measured so that irrigation happens only when it is required. To Drive with this application evapotranspiration is one such parameter which helps in detecting the soil moisture content and its retain ability with real time data from sensors and weather forecast. With the application of SVR + k, the accuracy of the system is increased with low minimum square error. This paper explains the approach of nonlinear characteristics with respect to kernel canonical correlation analysis(KCCA).With this exertion the input vectors of the prediction model is shortened by using the kernel functions. To estimate the soil moisture content the prediction algorithm is programmed with the support vector machine based kernel functions and to detect the evapotranspiration rate the canonical correlation analysis is is used. Finally the results experimented show the actual value for scheduling the irrigation process with respect to threshold. With SVR the accuracy is developed.
机译:本文解释了与物联网应用的精密农业的改进。全球水资源的缺乏引起了最佳利用的需求。要预定灌溉过程必须测量一些约束,以便仅在需要时发生灌溉。为了推动这种应用,蒸散是一种这样的参数,有助于检测土壤水分含量及其保留能力,与传感器和天气预报的实时数据。随着SVR + K的应用,系统的精度随着低的最小方误差而增加。本文介绍了核心典型相关分析(KCCA)的非线性特性的方法。通过使用内核功能来缩短预测模型的输入向量。为了估计土壤湿度含量,预测算法用基于支持向量机的核功能进行编程,并检测使用规范相关分析的蒸发速率。最后,结果实验表明了对阈值调度灌溉过程的实际值。使用SVR,开发了准确性。

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