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Modeling and simulation of a DC motor control system with digital PID controller and encoder in FPGA using Xilinx system generator

机译:使用Xilinx系统生成器在FPGA中使用数字PID控制器和编码器对直流电动机控制系统进行建模和仿真

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This paper presents a novel method for design and simulation of a DC motor closed loop control system in Field Programmable Gate Array device (FPGA). The digital designed PID controller is more advanced, beneficial and therefore produces a better response, as compared to the analog PID with velocity measurement. It can be implemented on system-on-chip devices easily. MATLAB Xilinx system generator toolbox based on Fixed-Point Arithmetic is used to design the digital PID controller using DSP architecture, plot the responses of the control system and generate the VHDL source code. The control system consists of a digital PID, the model of a real DC motor, a real and new incremental optical shaft encoder model, encoder to rpm and position blocks. Results show that the proposed system leads to lower the steady state and transient error.
机译:本文提出了一种在现场可编程门阵列器件(FPGA)中设计和仿真直流电动机闭环控制系统的新颖方法。与带速度测量的模拟PID相比,数字设计的PID控制器更先进,更有益,因此可产生更好的响应。它可以轻松地在片上系统设备上实现。基于定点算法的MATLAB Xilinx系统生成器工具箱用于设计基于DSP架构的数字PID控制器,绘制控制系统的响应并生成VHDL源代码。控制系统包括一个数字PID,一个实际的直流电动机模型,一个实际的和新的增量式光轴编码器模型,转速和位置块的编码器。结果表明,所提出的系统降低了稳态和瞬态误差。

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