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Development and performance assessment of a DC electric variable-rate controller for use on grain drills.

机译:用于谷物钻机的直流电动变速控制器的开发和性能评估。

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Site-specific crop management is a technology that modulates the application rate of field inputs such as seeds, fertilizers, and herbicides based on the needs of each management zone within a field. There are two methods available for changing the seeding rate in fluted-feed-roll type seed drills: (1) changing the active feed-roll length and/or, (2) changing the seed meter drive shaft speed. A possible method to develop a variable-rate seeder is to add a controller to a conventional grain drill which can change the speed of the seed meter drive shaft on-the-go. This was explored in the present study with the following main objectives: (a) to design a DC electric variable-rate controller to change a grain drill from a uniform to a variable-rate seeder, and (b) to determine the response time of the system. A motor control circuit was designed which used the output signals of two encoders as feedback. The system was consisted of: (1) a DC motor with a fixed-ratio gearbox, (2) encoders for sensing the rotational speeds of the grain drill drive wheel and the motor, (3) a GPS receiver, (4) a pulse-with-modulation (PWM) DC motor controller, and (5) a laptop. Dynamic tests were conducted at application rates of 87.5 (low) and 262.5 (high) kg ha-1. Sigmoid equations were best fitted to the transition data from low-to-high and high-to-low seeding rates. Our findings showed that the response times of low-to-high and high-to-low transition rates were 7.4 and 5.2 s, respectively.
机译:特定地点的作物管理是一项技术,可根据田地中每个管理区域的需求调节田间投入物的施用率,例如种子,肥料和除草剂。有两种方法可以改变带槽进给辊式播种机的播种率:(1)改变有效进给辊的长度和/或(2)改变排种机驱动轴的速度。开发可变速率播种机的一种可能方法是在常规谷物播种机上增加一个控制器,该控制器可以随时改变播种机驱动轴的速度。在本研究中对此进行了探索,其主要目的是:(a)设计直流电可变速率控制器,以将谷物钻机从均匀播种机变为可变速率播种机,以及(b)确定传感器的响应时间。系统。设计了一个电机控制电路,该电路使用两个编码器的输出信号作为反馈。该系统由以下部分组成:(1)带固定比率变速箱的直流电动机;(2)编码器,用于检测谷物钻机驱动轮和电动机的转速;(3)GPS接收器;(4)脉冲带调制(PWM)的直流电动机控制器,以及(5)笔记本电脑。在87.5(低)和262.5(高)kg ha -1 的施用量下进行动态测试。 Sigmoid方程最适合从低到高和高到低播种速率的过渡数据。我们的发现表明,低到高和高到低转换速率的响应时间分别为7.4和5.2 s。

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