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COMPARISON OF IMPACT PLATE AND TORQUE-BASED GRAIN MASS FLOW SENSORS

机译:冲击板和基于扭矩的颗粒流传感器的比较

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摘要

The performance of two grain flow sensors was compared on a stationary combine in the laboratory. The separator mechanism was intact, and the threshing cylinder was immobilized. Grain flow to the machine was controlled by electronically modulating gate valves on two grain conduits. Base grain flows ranged from 0.91 to 6.36 kg/s in 0.91 kg/s steps. Perturbations of 0.91, 1.82, and 2.73 kg/s could be introduced into the machine through a separate conduit. The results showed that the torque sensor was ten times more sensitive to changes in flow rate when compared to the impact plate sensor. Standard errors for both sensors increased at flow rates below 3 kg/s. For flows less than 1 kg/s, the standard error for the impact plate sensor was ±60%, and the standard error for the torque sensor was ±18%. At flow rates greater than 3 kg/s, the error for the impact plate sensor was ±15%, whereas the error for the torque sensor was ±5%. Measuring the torque required to lift the grain in the clean grain elevator is an alternative and more precise method of quantifying grain flow when compared to the impact plate sensor.
机译:在实验室中,在固定式联合收割机上比较了两个谷物流量传感器的性能。分离器机构完好无损,脱粒滚筒固定。通过两个谷物管道上的电子调节闸阀控制谷物流向机器。基本谷物流量为0.91至6.36 kg / s,步长为0.91 kg / s。可以通过单独的导管将0.91、1.82和2.73 kg / s的扰动引入机器。结果表明,与冲击板传感器相比,扭矩传感器对流量变化的敏感度高十倍。当流量低于3 kg / s时,两个传感器的标准误差都会增加。对于小于1 kg / s的流量,冲击板传感器的标准误差为±60%,扭矩传感器的标准误差为±18%。在流量大于3 kg / s时,冲击板传感器的误差为±15%,而扭矩传感器的误差为±5%。与冲击板传感器相比,测量在清洁谷物提升机中提升谷物所需的扭矩是量化谷物流量的另一种更精确的方法。

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