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Design of a Soil Cutting Resistance Sensor for Application in Site-Specific Tillage

机译:用于特定耕作的土壤切削阻力传感器的设计

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One objective of precision agriculture is to provide accurate information about soil and crop properties to optimize the management of agricultural inputs to meet site-specific needs. This paper describes the development of a sensor equipped with RTK-GPS technology that continuously and efficiently measures soil cutting resistance at various depths while traversing the field. Laboratory and preliminary field tests verified the accuracy of this prototype soil strength sensor. The data obtained using a hand-operated soil cone penetrometer was used to evaluate this field soil compaction depth profile sensor. To date, this sensor has only been tested in one field under one gravimetric water content condition. This field test revealed that the relationships between the soil strength profile sensor (SSPS) cutting force and soil cone index values are assumed to be quadratic for the various depths considered: 0–10, 10–20 and 20–30 cm (r2 = 0.58, 0.45 and 0.54, respectively). Soil resistance contour maps illustrated its practical value. The developed sensor provides accurate, timely and affordable information on soil properties to optimize resources and improve agricultural economy.
机译:精确农业的一个目标是提供有关土壤和作物特性的准确信息,以优化农业投入物的管理,以满足特定地点的需求。本文介绍了配备RTK-GPS技术的传感器的开发,该传感器可在穿越田野时连续有效地测量各种深度的土壤抗切割性。实验室和初步现场测试验证了该原型土壤强度传感器的准确性。使用手动土壤锥形渗透仪获得的数据用于评估该田间土壤压实深度剖面传感器。迄今为止,该传感器仅在一种重量水含量条件下在一个领域进行了测试。该现场测试表明,对于所考虑的各种深度:0–10、10–20和20–30 cm,土壤强度剖面传感器(SSPS)切削力和土壤锥指数值之间的关系假定为二次方(r 2 分别为0.58、0.45和0.54)。土壤抗力等值线图说明了其实用价值。开发的传感器可提供有关土壤特性的准确,及时和负担得起的信息,以优化资源并改善农业经济。

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