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Performance Evaluation on Electronic Control Systems for Field Sprayers Using Programmable Logic Controllers

机译:使用可编程逻辑控制器的现场喷雾器电子控制系统的性能评估

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The aim of this study was to develop a laboratory method for time response evaluation on electronically controlled spray equipment using Programmable Logic Controllers (PLCs). For that purpose, a PLC controlled digital drive inverter was set up to drive an asynchronous electric motor linked to a centrifugal pump on a experimental sprayer equipped with electronic flow control. The PLC was operated via RS232 serial communication from a PC computer. A user program was written to control de motor by adjusting the following system variables, all related to the motor speed: time stopped; ramp up and ramp down times, time running at a given constant speed and ramp down time to stop the motor. This set up was used in conjunction with a data acquisition system to perform laboratory tests with an electronically controlled sprayer. Time response for pressure stabilization was measured while changing the pump speed by ? 20%. The results showed that for a 0.2 s ramp time increasing the motor speed, as an example, an AgLogix Flow Control system (Midwest Technologies Inc.) took 22 s in average to readjust the pressure. When decreasing the motor speed, this time response was down to 8 s. General results also showed that this kind of methodology could make easierthe definition of standards for tests on electronically controlled application equipment.
机译:本研究的目的是利用可编程逻辑控制器(PLC)对电子控制喷涂设备进行时间响应评估的实验室方法。为此目的,建立了PLC控制的数字驱动逆变器,以驱动连接到具有电子流量控制的实验喷雾器上与离心泵连接的异步电动机。通过从PC计算机的RS232串行通信操作PLC。通过调整以下系统变量来编写用户程序以控制DE电机,所有与电机速度相关:停止时间;升起并斜坡延长时间,在给定的恒定速度下运行时间和斜坡停止时间来停止电机。该设置与数据采集系统结合使用,以使用电子控制喷雾器进行实验室测试。测量压力稳定的时间响应在改变泵速度时测量? 20%。结果表明,对于0.2秒的斜坡时间增加电机速度,例如Aglogix流量控制系统(Midwest Technologies Inc.)平均占用22秒以重新调整压力。在降低电机速度时,此时间响应降至8秒。一般结果还表明,这种方法可以更容易地对电子控制应用设备测试标准的定义。

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