用激光和超声波传感器自动测量土壤耕作变量的验证

Gabrielle C. R. de Azevedo, G. G. Zimmermann, S. P. Jasper, R. S. Ferraz, F. G. Moreno, D. Savi
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引用次数: 0

摘要

土壤耕作质量可以用一种叫做剖面仪的特殊装置来测量,它提供了扰动土壤的粗糙度、动员面积、起泡和厚度等信息。然而,它是一种过时的设备,需要许多小时的现场和办公室工作。因此,本工作的目的是开发一种使用激光三角测量和超声波传感器的电子剖面仪,用于测量数字动员土壤剖面。将所得结果与传统滑动杆轮廓仪所得结果进行了比较,以评价传感器的精度和效率。实验采用完全随机设计,环境受控。使用三种剖面仪(激光、超声波和常规)在原始、升高和移动的土壤剖面中测量了7次变量。与传统轮廓仪相比,超声电子轮廓仪在所有测量值上都有所不同,而传统轮廓仪与激光传感器的不同之处在于粗糙度的改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validation of automated measurements of soil tillage variables with laser and ultrasound sensors
ABSTRACT The quality of soil tillage can be measured with a specific device called profilometer, which provides information on roughness, mobilized area, blistering, and thickness in disturbed soils. However, it is an outdated device, requiring many hours of field and office work. Thus, the objective of the present work was to develop an electronic profilometer using laser triangulation and ultrasound sensors for measurement of digitally mobilized soil profile. The results obtained were compared to those acquired with a conventional sliding bar profilometer to evaluate the accuracy and efficiency of the sensors. The experiment was conducted in a completely randomized design under a controlled environment. The variables were measured seven times using the three profilometers (laser, ultrasound, and conventional) in the original, elevated, and mobilized soil profiles. The electronic profilometer with ultrasound differed in all the measurements when compared to the conventional profilometer, which differed from the laser sensor only in modified roughness.
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