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Comparing two measuring methods of soil microtopography

机译:比较土壤微形貌的两种测量方法

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Soil surface roughness (SSR) is a critical variable for retrieving soil moisture using microwave remote sensing model. To quantify SSR, the data of soil surface microtopography (SSM) is needed. SSM is the micro elevation of soil surface. The methods of microtopography measurement mainly include the pin meter and profile meter, photography, laser scanning. A method of laser scanning is considered the accurate measurement of microtopography in these methods, but need a very bulky device for field survey. It is necessary to introduce a new device which is precise and portable for microtopographic measurement. In this study, two devices, an Instantaneous-Profile Laser Scanner (IPLS) and a Structured Light 3D Scanner (SLS), would be investigated in the measuring of SSM. The portability of device, the capability of data acquiring, and the precision of two methods were compared with an experiment. With a practical measuring process, it was found that the portability of structured light 3D sensor is excellent. For the capability of acquiring data, the Instantaneous-Profile Laser Scanner is weak than structured light 3D sensor because of view angle of the camera, it cannot deal with the shadow effect very well. For the precision, the result showed that the precision of structured light 3D sensor is a little less than laser scanning because of the limitation of its spatial resolution. All of above, it is believed that structured light range image technology would be very useful on measurement of SSM, and structured light 3D sensor would be very popular in soil roughness measurement.
机译:土壤表面粗糙度(SSR)是使用微波遥感模型获取土壤水分的关键变量。为了量化SSR,需要土壤表面微形貌(SSM)的数据。 SSM是土壤表面的微观标高。显微形貌测量的方法主要包括针形仪和轮廓仪,照相,激光扫描。在这些方法中,激光扫描方法被认为是对微形貌的精确测量,但是需要非常庞大的设备进行现场调查。有必要引入一种精确且便携式的微形貌测量新设备。在这项研究中,将在SSM的测量中研究两种设备,即瞬时轮廓激光扫描仪(IPLS)和结构光3D扫描仪(SLS)。通过实验比较了设备的便携性,数据获取能力和两种方法的精度。通过实际的测量过程,发现结构光3D传感器的便携性非常好。为了获取数据,瞬时轮廓激光扫描仪由于相机的视角比结构光3D传感器弱,因此无法很好地处理阴影效果。对于精度,结果表明结构光3D传感器的精度由于其空间分辨率的限制而略低于激光扫描。综上所述,相信结构光范围图像技术在SSM的测量中将非常有用,而结构光3D传感器在土壤粗糙度测量中将非常受欢迎。

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