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Experiment research of impact-based sensor to monitor corn ear yield

机译:基于冲击的传感器监测玉米穗产量的实验研究

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Accurate yield information is important for drawing yield map. In order to analyze the performance of impact-based sensor applied to monitoring the yield of corn ear, we did experiment on the test platform. In the experiment, the elevator speed ranged from 300rpm to 550 rpm. Groups were divided according to the rotational speeds, and in every group the elevator speed was constant. The yield monitor recorded real-time yield of the corns. The data showed the significant relation between yield and the elevator speed, and R2 was 0.852936; max error was 16.04%. The variance analysis was done about the data of yield at three rotational speeds: low speed (300rpm), medium speed (450rpm), and high speed (550rpm). When the elevator speed was 300rpm, the yield was the most stable and its coefficient of variation (CV for short) was the lowest one: 3.66%. When the speed was 550rpm, the yield had min error and even its max error was just 12.29%. In the experiment, with different impact frequencies, the CV of the yield was 5.86%. When the frequency was higher than 2.5, the yield was more stable. The impact-based sensor can meet the requirement of yield monitoring for corn ear.
机译:准确的产量信息对于绘制产量图很重要。为了分析应用于监测玉米产量的基于冲击的传感器的性能,我们确实在测试平台上进行了实验。在实验中,电梯速度范围为300rpm至550rpm。根据旋转速度划分组,并且在每个组中,电梯速度是恒定的。产量监测记录玉米的实时产量。数据显示产量和电梯速度之间的显着关系,R 2 为0.852936;最大错误为16.04%。差异分析是关于产率的三个转速的数据:低速(300rpm),中速(450rpm)和高速(550rpm)。当电梯速度为300rpm时,产率是最稳定的,其变异系数(简短的CV)是最低的:3.66%。当速度为550rpm时,产量有最小误差,即使其最大误差也仅为12.29%。在实验中,具有不同的冲击频率,产率的CV为5.86%。当频率高于2.5时,产率更稳定。基于冲击的传感器可以满足玉米产量监测的要求。

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