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Detection of organic tea farms based on the density of spider webs using aerial photography with an unmanned aerial vehicle (UAV)

机译:利用无人机飞行器(无人机)的蜘蛛网密度检测有机茶园

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Organic tea farms promote biodiversity and perform important ecological functions that benefit the environment and supply safe and secure products to consumers. The study of organic farming requires field study to identify and collect species on site. I proposed the use of aerial photography obtained by an unmanned aerial vehicle (UAV) to identify tea farms that provided a habitat for spiders. In this study, two locations were selected in tea farms near the town of Wazuka, in Kyoto Prefecture, Japan. Aerial photographs were taken after confirming conditions on the ground were right for maximum contrast because the spider webs appearing white when the right atmospheric conditions highlight fine water droplets adhering to the strands in the webs. This occurs when the temperature and humidity combine in such a way as to cause moisture to condense from the atmosphere, also known as the dew point. When this occurs, the webs appear white in daylight and are easily identified by visual orthomosaic images obtained from the UAV. The spatial distribution of spider webs varied as a function of farming method used in different sections of the farms. The results of the visual analysis showed that the density of spider webs correlates with the type of farming method. Sections in which organic farming methods were practiced showed the highest density of webs, followed by sections of conventional farming (extensive cultivation), and lastly, sections using conventional farming methods had the lowest density of webs. The density was easily estimated from orthomosaic images constructed from aerial photographs and demonstrated that organic tea farms can be distinguished from farms employing conventional farming methods based on this criterion.
机译:有机茶园促进生物多样性,并表现了一些益处环境的重要生态功能,为消费者提供安全和保护产品。有机农业的研究需要现场研究来识别和收集现场的物种。我提出了使用无人驾驶飞行器(UAV)获得的航空摄影来识别为蜘蛛提供栖息地的茶园。在这项研究中,在日本京都县威冢市附近的茶园中选择了两个地点。在确认地面确认条件后采取空中照片,因为蜘蛛网出现在白色的大气条件突出显示粘附在腹板中的股线的细水滴。这种情况发生在温度和湿度以使水分与大气中冷凝的方式相结合,也称为露点。发生这种情况时,腹板在白天出现白色,并且通过从UAV获得的视觉正视图像容易地识别。蜘蛛网的空间分布变化为农场不同部分中使用的农业方法的函数。目视分析的结果表明,蜘蛛网的密度与农业方法的类型相关。实践有机养殖方法的部分显示出最高密度的纤维网,其次是常规耕作(广泛栽培)的部分,最后,使用常规农业方法的切片具有最低的纤维网密度。从航天照片构建的正畸图像容易估计密度,并证明了基于该标准的常规农业方法的农场可以区分有机茶园。

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