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首页> 外文期刊>Applied Engineering in Agriculture >Grain yield monitor flow sensor accuracy for simulated varying field slopes.
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Grain yield monitor flow sensor accuracy for simulated varying field slopes.

机译:谷物产量监测器流量传感器的精度可用于模拟变化的田野坡度。

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摘要

Yield monitors have become vital reference tools for grain growers in making informed management decisions in their cropping operations. The cornerstone of a yield monitor system is the mass flow sensor, used to calculate the mass flow rate of clean grain through a combine. This investigation was initiated to examine the influence of varying field slopes (both roll and pitch) on accuracy levels of a mass flow sensor for a commercially available yield monitor system. A laboratory test stand consisting of a combine clean grain elevator mounted on a gimbal fixture was used to simulate varying field slopes normally experienced during field operation of a combine. Results indicated that slope affected mass flow sensor response. Combine pitch had a greater effect than roll on mass flow measurements. While errors were observed during roll tests (-3.45% to 3.46%), they were considered small and were impractical to correct using predictive approaches. Pitch tests generated higher errors (-6.41% to 5.50%) with discernable linear trends indicating that mass flow was underestimated during aft operating conditions and overestimated during forward rotations. This trend suggests gravitational acceleration of the mass flow sensor during combine pitch may cause these errors. The use of a predictive linear model, to correct flow rates for slope, greatly decreased the overall error for the pitch results.
机译:产量监控器已成为谷物种植者在其种植作业中做出明智管理决策的重要参考工具。产量监控系统的基础是质量流量传感器,用于计算通过联合收割机的清洁谷物的质量流量。开始这项研究以检查变化的场斜率(横摇和纵摇)对市售良率监测系统质量流量传感器精度水平的影响。由安装在万向支架上的联合收割机清洁谷物升降机组成的实验室测试台被用来模拟通常在联合收割机的田间作业中遇到的变化的田地坡度。结果表明,坡度影响质量流量传感器的响应。联合收割机的螺距对质量流量测量的影响大于滚动。虽然在滚动测试期间观察到错误(-3.45%至3.46%),但这些错误被认为很小,使用预测方法无法纠正。螺距测试产生较高的误差(-6.41%至5.50%),并且线性趋势可辨别,这表明在后操作条件下质量流量被低估,而在正向旋转期间质量流量被高估。该趋势表明在联合收割机俯仰期间质量流量传感器的重力加速度可能会导致这些误差。使用预测线性模型来校正坡度的流量,可以大大降低俯仰结果的总体误差。

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