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Development and evaluation of a low-cost precision seeding control system for a corn drill

机译:低成本,高精度的玉米播种机控制系统的开发和评估

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Precision seeding requires that the corn drill drop seeds into the soil by a specific in-row spacing while its travelling speed fluctuates due to unevenness of the field ground. This paper presents a low-cost precision seeding control system for a conventional corn drill with mechanical metering devices of finger-pickup type. A median filtering method was implemented in the control system to process measurements from a rotary encoder in order to acquire stable values of the corn drill travelling speed. The metering unit was driven by an electric motor controlled by the metering ECU according to the actual travelling speed and the desired in-row spacing in real-time. A user interface was programmed to communicate with ECUs for configuring parameters and displaying operating information during working. The newly-developed precision seeding control system was first calibrated in terms of speed measurement and control for two ECUs. Experiments were conducted on a seeding test platform in the laboratory for evaluating its accuracy in dropping seeds by giving different in-row spacing under different travelling speeds of the conveyor sticky belt. Results showed that the average spacing error was less than 2 cm and the maximum RMS error was 0.78 cm for all spacing values including 25 cm, 30 cm and 35 cm under the travelling speed of 1.0-8.0 km/h. These indicated that the low-cost precision seeding control system worked in a both accurate and stable way.
机译:精确播种要求玉米播种机以特定的行距将种子滴入土壤,同时其行进速度由于田间地面的不均匀性而波动。本文提出了一种用于常规玉米钻机的低成本精密播种控制系统,该系统具有指尖式机械计量装置。在控制系统中实施了中值滤波方法,以处理来自旋转编码器的测量值,以便获取玉米钻头行进速度的稳定值。配量单元由配量ECU控制的电动机根据实际行驶速度和所需的行内间隔实时驱动。用户界面经过编程,可与ECU通信以配置参数并在工作期间显示操作信息。新开发的精密播种控制系统首先在速度测量和两个ECU的控制方面进行了校准。在实验室的播种测试平台上进行了实验,通过在传送机粘性皮带的不同移动速度下提供不同的行内间距来评估其滴下种子的准确性。结果表明,在1.0-8.0 km / h的行驶速度下,包括25 cm,30 cm和35 cm在内的所有间距值,平均间距误差均小于2 cm,最大RMS误差为0.78 cm。这些表明低成本的精确播种控制系统以准确和稳定的方式工作。

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