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Grain separation loss monitoring system in combine harvester.

机译:联合收割机的谷物分离损失监测系统。

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Based on laboratory experimental results obtained with an axial threshing test-rig with tangential feeding, cumulative distribution functions of separated grain in axial and radial directions of threshing rotor were built. Based on the analysis of the relationship between grain separation loss and grain separation flux in an area under the concave, an indirect grain separation loss monitoring method is presented in this paper. Piezo-electric polyvinylidene fluoride (PVDF) film was selected as sensitive material to design a grain flux sensor. While grain and material-other-than-grain (MOG) separated in the monitoring area impact on piezo-electric PVDF films, different electric charges are generated. After signal progressing with a charge amplifier, frequency discrimination and wave shaping, the number of grain can be counted by a microcontroller (MCU) and the grain separation loss of combine harvester can be measured in real-time. Field test results indicated that the measurement errors of grain separation loss recorded by the monitoring system relative to the loss checked manually were less than 12%.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2011.01.016
机译:基于带切向进给的轴向脱粒试验台的实验室实验结果,建立了分离粒在脱粒转子轴向和径向的累积分布函数。在分析凹面下区域颗粒分离损失与颗粒分离通量的关系的基础上,提出了一种间接的颗粒分离损失监测方法。选择压电聚偏二氟乙烯(PVDF)膜作为敏感材料来设计晶粒通量传感器。尽管在监视区域中分离出的谷物和非谷物材料(MOG)对压电PVDF薄膜产生影响,但会产生不同的电荷。使用电荷放大器,频率识别和波形整形处理信号后,可以通过微控制器(MCU)计数谷物数量,并且可以实时测量联合收割机的谷物分离损失。现场测试结果表明,相对于手动检查的损失,监控系统记录的谷物分离损失的测量误差小于12%。数字对象标识符http://dx.doi.org/10.1016/j.compag.2011.01。 016

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