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An Adaptive Roller Speed Control Method Based on Monitoring Value of Real-Time Seed Flow Rate for Flute-Roller Type Seed-Metering Device

机译:一种自适应滚子速度控制方法基于长笛滚筒式种子计量装置实时种子流量监测值

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摘要

In order to obtain desirable crop yields, grain seeds need to be sown at the optimal seed amount per hectare with uniform distribution in the field. In previous grain sowing processes, the seeding rates are controlled by the rotational speed of the flute roller which significantly effects the uniform distribution of the seeds due to disturbances, such as the reduction of the seeds’ mass in the hopper and the change of working length of the flute roller. In order to overcome the above problem, we developed an adaptive roller speed control system based on the seed flow rate sensor. The developed system can monitor and feedback actual seeding rates. In addition, based on the monitoring value of the real-time seeding rates, an adaptive roller speed control method (ARSCM), which contains an algorithm for calculating the seeding rate with a compensation, was proposed. Besides, the seeding performance of the ARSCM and that of the conventional roller speed control method (CRSCM) were compared. The results of constant-velocity experiments demonstrated that the accuracy (SA) and the coefficient of variation (SCV) of the seeding rates controlled by the ARSCM were 94.12% and 6.77%, respectively. As for the CRSCM, the SA and SCV were 89.00% and 8.95%, respectively. Under variable-velocity conditions, the SA and SCV of the proposed system were 91.58% and 11.08%, respectively, while those of the CRSCM were 88.48% and 13.08%, respectively. Based on the above results, this study concluded that the ARSCM is able to replace the CRSCM in practical sowing processes for the optimal and uniform seed distribution in the field.
机译:为了获得所需的作物产量,需要在每公顷的最佳种子量中播种谷物的最佳种子量,在该场中的均匀分布。在先前的晶粒播种过程中,播种速率由长笛辊的旋转速度控制,这显着影响了由于干扰引起的种子的均匀分布,例如料斗中的种子质量的减少和工作长度的变化长笛辊。为了克服上述问题,我们开发了一种基于种子流量传感器的自适应滚子速度控制系统。开发系统可以监控和反馈实际播种率。另外,基于实时播种速率的监测值,提出了一种适应滚子速度控制方法(ARSCM),其包含用于计算播种速率的算法。此外,比较了ARSCM的播种性能和传统滚子速度控制方法(CRSCM)的播种性能。恒定速度实验的结果表明,ARSCM控制的播种率的精度(SA)和变异系数(SCV)分别为94.12%和6.77%。至于CRSCM,SA和SCV分别为89.00%和8.95%。在可变速度条件下,所提出的系统的SA和SCV分别为91.58%和11.08%,而CRSCM的SA分别为88.48%和13.08%。基于上述结果,该研究得出结论,ARSCM能够在实际播种过程中取代CRSCM,以实现现场最佳和均匀的种子分布。

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