Analisis Spesifisitas Terhadap Sensor NPK

Ivan Lionel, Abd Ro’uf, Bakhtiar Alldino
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Abstract

Insufficient use of fertilizers results in non-optimal plant growth, while excessive use is wasteful and results in pollution. Sensor usage is one method for measuring the nutrient content in the soil so that the fertilization process can be carried out precisely. Accuracy, precision, and error are commonly used in analyzing sensor quality. But for chemical measurements, the specificity also needs to be analyzed. This is because the soil contains various types of nutrients, so it is necessary to know whether the readings from the sensor only come from the desired nutrients or the others. In this writing, the elements measured were N, P, and K which are nutrients needed by plants in large quantities. The sensors were tested using compounds containing N, P, or/and K elements and NPK fertilizers with different NPK ratios. Results of this study prove that the sensor is not specific as the readings are known to use the electroconductivity method as proved by the regression results between the two variables which have R² ≈ 1 correlation. In addition, the sensor also produces readings for elements/compounds that should not be read and cannot distinguish the ratio of types of compound NPK fertilizer with different types.
NPK传感器人脸特异性分析
肥料使用不足会导致植物生长不理想,而过度使用则会造成浪费和污染。传感器的使用是测量土壤中养分含量的一种方法,以便精确地进行施肥过程。精度、精密度和误差通常用于分析传感器质量。但对于化学测量,其特异性也需要分析。这是因为土壤中含有各种类型的营养物质,因此有必要知道传感器的读数是否只来自所需的营养物质或其他营养物质。在这篇文章中,测量的元素是N、P和K,它们是植物大量需要的营养物质。使用含有N、P或/和K元素的化合物以及具有不同NPK比率的NPK肥料来测试传感器。这项研究的结果证明,传感器是不特定的,因为已知读数使用导电性方法,这两个变量之间的回归结果证明了这一点,R²≈1相关。此外,传感器还产生不应读取的元素/化合物的读数,并且不能区分不同类型的复合NPK肥料的类型比例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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