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Path Loss Determination Using Linear and Cubic Regression Inside a Classic Tomato Greenhouse

机译:使用线性和三次回归确定经典番茄温室内的路径损耗

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摘要

The production of tomatoes in greenhouses, in addition to its relevance in nutrition and health, is an activity of the agroindustry with high economic importance in Spain, the first exporter in Europe of this vegetable. The technological updating with precision agriculture, implemented in order to ensure adequate production, leads to a deployment planning of wireless sensors with limited coverage by the attenuation of radio waves in the presence of vegetation. The well-known propagation models FSPL (Free-Space Path Loss), two-ray, COST235, Weissberger, ITU-R (International Telecommunications Union—Radiocommunication Sector), FITU-R (Fitted ITU-R), offer values with an error percentage higher than 30% in the 2.4 GHz band in relation to those measured in field tests. As a substantial improvement, we have developed optimized propagation models, with an error estimate of less than 9% in the worst-case scenario for the later benefit of farmers, consumers and the economic chain in the production of tomatoes.
机译:除了在营养和健康方面具有重要意义外,在温室中生产西红柿也是农业工业的一项重要活动,在西班牙是该蔬菜在欧洲的第一大出口国。为了确保足够的产量而实施的精确农业技术更新,导致了无线传感器的部署规划,该覆盖范围由于存在植被而造成的无线电波衰减而覆盖范围有限。众所周知的传播模型FSPL(自由空间路径损耗),两射线,COST235,Weissberger,ITU-R(国际电信联盟-无线电通信部门),FITU-R(适合ITU-R)提供误差值相较于现场测试所测得的百分比,该百分比在2.4 GHz频带中高于30%。作为一项重大改进,我们开发了优化的传播模型,在最坏的情况下,误差估计小于9%,以使后来的农民,消费者和番茄生产中的经济链受益。

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