首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >A Non-Destructive and Direction-Insensitive Method Using a Strain Sensor and Two Single Axis Angle Sensors for Evaluating Corn Stalk Lodging Resistance
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A Non-Destructive and Direction-Insensitive Method Using a Strain Sensor and Two Single Axis Angle Sensors for Evaluating Corn Stalk Lodging Resistance

机译:使用应变传感器和两个单轴角度传感器的非破坏性且方向不敏感的方法来评估玉米秸秆的抗倒伏性

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摘要

Corn stalk lodging is caused by different factors, including severe wind storms, stalk cannibalization, and stalk rots, and it leads to yield loss. Determining how to rapidly evaluate corn lodging resistance will assist scientists in the field of crop breeding to understand the contributing factors in managing the moisture, chemical fertilizer, and weather conditions for corn growing. This study proposes a non-destructive and direction-insensitive method, using a strain sensor and two single axis angle sensors to measure the corn stalk lodging resistance in the field. An equivalent force whose direction is perpendicular to the stalk is utilized to evaluate the corn lodging properties when a pull force is applied on the corn stalk. A novel measurement device is designed to obtain the equivalent force with the coefficient of variation (CV) of 4.85%. Five corn varieties with two different planting densities are arranged to conduct the experiment using the novel measurement device. The experimental results show that the maximum equivalent force could reach up to 44 N. A strong relationship with the square of the correlation coefficient of 0.88 was obtained between the maximum equivalent forces and the corn field’s stalk lodging rates. Moreover, the stalk lodging angles corresponding to the different pull forces over a measurement time of 20 s shift monotonically along the equivalent forces. Thus, the non-destructive and direction-insensitive method is an excellent tool for rapid analysis of stalk lodging resistance in corn, providing critical information on in-situ lodging dynamics.
机译:玉米秸秆倒伏是由多种因素引起的,包括严重的暴风雨,秸秆吞噬和秸秆腐烂,并导致产量损失。确定如何快速评估玉米抗倒伏能力将有助于作物育种领域的科学家了解管理玉米生长所需的水分,化肥和天气条件的因素。这项研究提出了一种非破坏性和方向性不敏感的方法,该方法使用应变传感器和两个单轴角度传感器来测量田间玉米秸秆的倒伏阻力。当在玉米秸秆上施加拉力时,利用垂直于秸秆的方向的等效力来评估玉米的倒伏特性。设计了一种新颖的测量设备,以获得4.85%的变异系数(CV)的等效力。使用新颖的测量设备,安排了具有两种不同种植密度的五个玉米品种来进行实验。实验结果表明,最大当量力可以达到44N。最大当量力与玉米田秸秆倒伏率之间的相关系数为0.88的平方具有很强的相关性。此外,在20 s的测量时间内,与不同拉力相对应的茎秆放置角度沿着等效力单调移动。因此,非破坏性和对方向不敏感的方法是快速分析玉米秸秆抗倒性的极佳工具,可提供有关就地塌陷动力学的关键信息。

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