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Multi-rate digital control and signal processing: Theory and applications to motion control systems.

机译:多速率数字控制和信号处理:运动控制系统的理论和应用。

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摘要

In this dissertation, multi-rate control is studied for performance enhancement of motion control systems under measurement constraints. A multi-rate feedback/feed-forward control structure is proposed and analyzed. For feedback control systems, multi-rate digital redesign methods are considered from both the analysis and design points of view.; In the multi-rate feedback/feed-forward control scheme, the feedback controller is updated at the same rate as the sampling rate of the output measurements. The feedforward controller processes the desired output signal for high accuracy tracking, and its output is updated at a rate N-times faster than the sampling rate of the output measurements. When compared with the single rate feedback/feed-forward control scheme, the proposed scheme has at least two advantages. When the sampling rate of the output measurements is fixed, the plant output remains closer to the desired output by increasing the update rate of the feed-forward control input. In certain cases, the proposed multi-rate scheme can avoid the fundamental problem in the design of feed-forward controllers arising from unstable zeros of the discrete time transfer function model of the system.; Digital redesign by multi-rate sampling and high order holds are studied for recovering the performance of the continuous time controller which may be lost by discretization, especially for feedback control systems with large measurement sampling period. The controller output is updated at a frequency N times faster than the measurement sampling frequency, and at the same time the evolution of the error signal between two consecutive sampling instances is estimated by utilizing present and past error measurements. General equations for analyzing such multi-rate control systems are presented. It is shown that multi-rate control and high order holds are useful for recovering the performance of the original continuous time compensator. Also studied is a multi-rate H optimal digital redesign of continuous time controllers. It focuses on the performance of the closed loop system under digital control. The discrete time controller is obtained through minimization of H norm of the lifted system. The stability of the closed loop system with the redesigned controller is guaranteed. The proposed approaches are applied to track following control of a hard disk drive (HDD) servo system.
机译:本文针对测量约束条件下的运动控制系统的性能进行了多速率控制研究。提出并分析了一种多速率反馈/前馈控制结构。对于反馈控制系统,从分析和设计的角度考虑了多速率数字重新设计方法。在多速率反馈/前馈控制方案中,反馈控制器以与输出测量的采样速率相同的速率进行更新。前馈控制器处理所需的输出信号以进行高精度跟踪,并且其输出的更新速率比输出测量的采样速率快N倍。与单速率反馈/前馈控制方案相比,该方案至少具有两个优点。当输出测量的采样率固定时,通过增加前馈控制输入的更新率,工厂输出将保持更接近所需的输出。在某些情况下,所提出的多速率方案可以避免由于系统离散时间传递函数模型的不稳定零而引起的前馈控制器设计中的根本问题。研究了通过多速率采样和高阶保持进行的数字重新设计,以恢复离散化可能会丢失的连续时间控制器的性能,特别是对于具有较大测量采样周期的反馈控制系统而言。控制器输出的更新频率比测量采样频率快N倍,并且同时利用当前和过去的误差测量值来估计两个连续采样实例之间误差信号的变化。提出了用于分析这种多速率控制系统的一般方程。结果表明,多速率控制和高阶保持对于恢复原始连续时间补偿器的性能很有用。还研究了连续时间控制器的多速率 H 最优数字重新设计。它着重于数字控制下闭环系统的性能。通过最小化提升系统的 H 范数来获得离散时间控制器。经过重新设计的控制器可确保闭环系统的稳定性。所提出的方法被应用于跟踪硬盘驱动器(HDD)伺服系统的跟踪控制。

著录项

  • 作者

    Gu, Yuping.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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