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Soil sensing survey robots based on electronic nose

机译:基于电子鼻的土壤传感调查机器人

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Nowadays autonomous robots are used in many filed of agriculture for increasing efficiency, and especially reducing the cost of the scarce human labor. Mobile ground robot and flying drone can be used to survey the farmland collecting necessary information such as ambient and crop conditions, soil fertility, pest and disease, etc. In this work, we have implemented an electronics nose (e-nose) based on metal oxide gas sensors installed on a mobile robot for detection of organic volatile compounds contained in the soil surface to examine the fertility of soil. Farmers can use such information to manage crops fertilizing or watering. To demonstrate this idea, we have mapped the soil volatiles at different places and having different types of soil, using laboratory-made portable e-nose and mobile e-nose robot. Therefore, the experiment was separated into 2 parts. The first part was to collect soils from different places and to measure the soil volatiles using portable e-nose that has eight metal-oxide gas sensors, in order to classify and confirm the difference between each sample. Secondly, the array of six gas sensors was then installed on a semi-autonomous six-wheeled robot chassis in order to measure real situations of soil surface located at four different places. It was found that both portable and robotized e-noses can identify and confirm the difference of soil volatiles when using principal component analysis (PCA) as pattern recognition.
机译:如今,自治机器人用于许多农业申请效率,特别是降低稀缺人类劳动力的成本。移动地机器人和飞行无人机可用于调查农田收集必要的信息,如环境和作物条件,土壤肥力,害虫和疾病等。在这项工作中,我们已经实施了基于金属的电子鼻子(电子鼻)安装在移动机器人上的氧化物气体传感器,用于检测土壤表面中含有的有机挥发性化合物,以检查土壤的生育率。农民可以使用这些信息来管理施肥或喷水的作物。为了证明这种想法,我们在不同的地方映射了土壤挥发物,并使用实验室制造的便携式电子鼻和移动电子鼻器机器人具有不同类型的土壤。因此,将实验分成2份。第一部分是使用具有八个金属氧化物气体传感器的便携式电子鼻子来收集来自不同场所的土壤并测量土壤挥发物,以便分类和确认每个样品之​​间的差异。其次,然后将六个气体传感器阵列安装在半自动六轮机器人机箱上,以测量位于四个不同地方的土壤面积的实际情况。发现,当使用主成分分析(PCA)作为模式识别时,便携式和机器化的E-NOSES可以识别和确认土壤挥发物的差异。

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