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An FPGA based implementation of a flexible digital PID controller for a motion control system

机译:基于FPGA的运动控制系统灵活数字PID控制器的实现

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摘要

Implementation of digital controllers in embedded environment suffers from the inherent problems associated with analog-digital signals interfacing in hard real-time, therefore, the control algorithms are invariantly subjected to approximations. This paper presents a novel technique for implementation of an efficient FPGA based digital Proportional-Integral-Derivative (PID) controller for the motion control of a permanent magnet DC motor. The implementation technique circumnavigates the problem of interfacing analog and digital systems in real-time. The controller is used in a speed control loop. The hardware implementation has been done on a Xilinx Spartan 3 FPGA chip. A novel technique has been adopted for the generation of the control input as a PWM signal for controlling the motor driver circuit and decoding the optical encoder data for using it for the speed feedback in the PID control loop. The VHDL algorithm for the proposed implementation has also been presented in this paper. A comparison of the experimental results with the Matlab® based simulation shows the effectiveness of the proposed method.
机译:在嵌入式环境中实现数字控制器会遇到与硬实时进行接口的模拟数字信号相关的内在问题,因此,控制算法总是要经过近似处理。本文提出了一种新颖的技术,用于实现基于FPGA的高效数字比例-积分-微分(PID)控制器,用于永磁直流电动机的运动控制。该实现技术解决了实时连接模拟和数字系统的问题。该控制器用于速度控制回路。硬件实现已在Xilinx Spartan 3 FPGA芯片上完成。已采用一种新技术来生成控制输入作为PWM信号,以控制电动机驱动器电路并解码光学编码器数据,以将其用于PID控制回路中的速度反馈。本文还介绍了用于所建议实现的VHDL算法。将实验结果与基于Matlab ®的仿真结果进行比较,表明了该方法的有效性。

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