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Design of variable rate fertilization control system based on improved PID

机译:基于改进PID的可变率施肥控制系统设计

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To enhance the control accuracy of the variable rate fertilization control system and to solve the problems of long delay time and high overshoot of the variable rate fertilization general PID controller, a variable rate fertilization control system was designed based on improved PID. The structure of a designed variable rate fertilizer applicator was introduced. The fertilizer apparatus and the stepping motor mathematical model were built. An anti integration saturation method was adopted to improve the integral of the general PID controller. An incomplete derivation method was adopted to improve the differential of the general PID controller. The improved PID controller mathematical model and its control block map were built. Finally, the simulation experiment of the step motor rev control were made, which included 80r/min and 120r/min speed tracking contrast experiments. From the simulation experiment result it could be seen that the improved PID controller was better than the general PID controller in terms of decreasing overshoot and shorten delay time.
机译:为了提高可变率施肥控制系统的控制精度,并解决长延迟时间的问题和可变速率施肥通用PID控制器的高升高,基于改进的PID设计了一种可变速率施肥控制系统。引入了设计的可变速率施用器的结构。建造了肥料设备和步进电机数学模型。采用反积分饱和法来改善一般PID控制器的积分。采用了不完整的推导方法来改进一般PID控制器的差异。建立了改进的PID控制器数学模型及其控制块图。最后,制备了阶梯电机转速控制的仿真实验,其中包括80r / min和120r / min速度跟踪对比实验。从仿真实验结果,可以看出,在减少过冲并缩短延迟时间方面,改进的PID控制器优于一般PID控制器。

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