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DEVELOPMENT OF SOIL CLOD FINENESS MEASUREMENT SYSTEM WITH LASER SENSOR BY USING POLYGON MIRROR

机译:用多边形镜子开发激光传感器的土壤土壤分离细度测量系统

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The effect of soil crush by tillage must be monitored in order to ensure sound growth of the crop and stabilized crop yield, since physical soil environment should be kept to the optimum condition. The goal of this study is to develop a technology, which obtains soil clod fineness during rotary tillage We have developed a surface irregularity measuring system, which is based on non-contact and non-destructive measurement by using a laser displacement sensor. In our previous study, the estimation of soil clod fineness by using irregularity data has become possible, since a relationship between the soil surface irregularity data that obtained by the irregularity measuring system and soil clod fineness by sieve method has been clarified. In the case of onboard measurement, the accurate measurement can be carried out, by catching as many irregularity data as possible. Then, the measuring system was modified in order to raise the data acquisition efficiency using the polygon mirror. A simple experiment to get a relation between irregularity data and soil clod fineness by using modified system was performed. The result showed that there was no effect of the modification to obtained data.
机译:必须监测土壤粉碎的效果,以确保作物和稳定的作物产量的声音增长,因为物理土壤环境应保持最佳状态。本研究的目的是开发一种技术,该技术在旋转耕作期间获得了土壤Clod细度,我们开发了一种表面不规则测量系统,其通过使用激光位移传感器基于非接触和非破坏性测量。在我们以前的研究中,通过使用不规则数据的土壤分裂细度的估计是可能的,因为已经澄清了通过筛分方法的不规则测量系统和土壤Clod精细度获得的土壤表面不规则数据之间的关系。在车载测量的情况下,可以通过尽可能多的不规则数据来执行精确的测量。然后,修改测量系统以使用多边形镜子提高数据采集效率。进行了一种简单的实验,以通过使用修改系统进行不规则数据和土壤Clod精细度的关系。结果表明,对获得数据的修改没有影响。

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