基于FPGA的数字PID控制器的设计与实现

Michal Kocur, S. Kozák, B. Dvorscak
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引用次数: 46

摘要

本文的主要目的是利用现场可编程门阵列(FPGA)技术设计一种有效实现数字PID控制算法的方法。比例-积分-导数(PID)控制方法和算法是一种最常用的有效反馈控制器,在许多工业过程的自动控制中得到应用。PID控制器已广泛应用于许多不同的领域,如电力系统、驱动控制、汽车机电一体化、航空航天、过程控制和机器人。PID控制算法的实现经历了几个实现阶段,从早期的机械、电气和气动设计到基于微处理器的系统。近年来,现场可编程门阵列(fpga)已成为实现数字控制算法系统的另一种解决方案,该系统以前由通用微处理器系统主导。与传统的PID实现相比,基于fpga的控制器实现具有速度快、功能复杂、功耗低等优点。基于fpga的平台的另一个优势是其执行并发操作的能力,允许不同数字控制器系统的并行架构设计。在本文中,我们展示了一种硬件和软件模块开发的应用,用于快速动态系统的数字PID控制算法的应用和实现。我们使用FPGA技术(Xilinx公司的Spartan - 6 FPGA家族)成功地实现了高速直流电机的FPGA PID控制算法,并对其进行了验证和分析,为该应用提供了低风险,低成本和低功耗的最佳平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of FPGA - digital based PID controller
The main aim of this paper is to design an effective realization of digital PID control algorithms using field-programmable gate array (FPGA) technology. The proportional-integral-derivative (PID) control methods and algorithms are one of the most common types of effective feedback controllers that are used in automatic control in many industrial processes. PID controller has been widely used in many different areas, such as power systems, drives control, automotive mechatronics, aerospace, process control, and robotics. Implementation of PID control algorithms has gone through several stages of realization, from early mechanical, electrical and pneumatic designs to microprocessor-based systems. Recently, field-programmable gate arrays (FPGAs) have become an alternative solution for the realization of digital control algorithm systems, which were previously dominated by general-purpose microprocessor systems. In comparison with convention PID realization, FPGA-based controller's realization offer advantages such as high speed, complex functionality, and low power consumption. Another advantage of FPGA-based platforms is their capability to execute concurrent operations, allowing parallel architectural design of different digital controllers system. In the propose paper we demonstrate of the one application of hardware and software module development for the application and realization of digital PID control algorithm for dynamical systems with fast dynamics. We successfully implemented verified and analyze the FPGA PID control algorithm realization for high speed DC motors using FPGA technology (Spartan - 6 FPGA Family of company Xilinx) which delivers an optimal balance of low risk, low cost, and low power for this applications.
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