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Null-space-based steady-state tracking error compensation of simple adaptive control with parallel feedforward compensator and its application to rotation control

机译:基于空的空间稳态跟踪误差补偿并联馈电补偿器简单自适应控制及其在旋转控制中的应用

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摘要

In the design of simple adaptive control (SAC) using almost strictly positive real (ASPR), the feedback control system is stabilized by the output feedback with a high gain. Although ASPR is not, however, generally satisfied, it is achieved by introducing a parallel feedforward compensator (PFC). When SAC is designed for the augmented system which consists of an actual plant and PFC, not the actual plant output but the augmented system output converges to the reference input because of the influence of PFC. To resolve the problem, an extension method of the conventional SAC is proposed. In the proposed method, based on the null-space of an augmented plant, an exogenous input, which is independent of the augmented system output, is newly introduced. Because the exogenous input is designed so that PFC output is to be 0, the actual plant output is the same as the augmented system output in the steady state, and as a result, the actual plant output converges to the reference input. From a practical application point of view, the proposed method can easily improve the control performance of the conventional SAC with a PFC. In the proposed method, an exogenous input generated as the feedback signal of PFC output is only added to the conventional SAC control input. Therefore, the proposed method can be applied to various field in which the SAC method has been implemented, e.g., process control, mechanical systems, power systems, robotics, and others. In the present study, the effectiveness of the proposed method is also demonstrated through experiments for a motor control.
机译:在使用几乎严格正真(ASPR)的简单自适应控制(SAC)的设计中,通过高增益的输出反馈稳定反馈控制系统。然而,虽然没有,但是,通常满足,但是通过引入并行前馈补偿器(PFC)来实现。当SAC专为由实际工厂和PFC组成的增强系统而不是实际的工厂输出,而是由于PFC的影响,增强系统输出会收敛到参考输入。为了解决问题,提出了传统囊的扩展方法。在提出的方法中,基于增强植物的零空间,新引入了与增强系统输出无关的外源性输入。由于外源输入设计使PFC输出为0,因此实际的工厂输出与稳定状态下的增强系统输出相同,结果,实际工厂输出会聚到参考输入。从实际应用的角度来看,所提出的方法可以容易地提高传统囊与PFC的控制性能。在所提出的方法中,作为PFC输出的反馈信号产生的外源输入仅添加到传统的SAC控制输入中。因此,可以应用所提出的方法,其中已经实现了SAC方法,例如,过程控制,机械系统,电力系统,机器人等。在本研究中,通过对电机控制的实验还证明了所提出的方法的有效性。

著录项

  • 来源
    《Control Engineering Practice》 |2020年第12期|104651.1-104651.7|共7页
  • 作者单位

    Department of Mechanical Engineering Graduate School of Engineering University of Hyogo 2167 Shosha Himeji Hyogo 671-2280 Japan;

    Department of Mechanical Engineering Graduate School of Engineering University of Hyogo 2167 Shosha Himeji Hyogo 671-2280 Japan;

    Department of Mechanical Engineering Graduate School of Engineering University of Hyogo 2167 Shosha Himeji Hyogo 671-2280 Japan;

    Department of Control Engineering National Institute of Technology Maizuru College Kyoto Japan;

    Department of Intelligent Mechanical Systems Kumamoto University Kumamoto Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Simple adaptive control; Almost strictly positive real; Parallel feedforward compensator; Redundant input; Null-space; Rotation control;

    机译:简单的自适应控制;几乎严格积极的真实;并联馈电补偿器;冗余输入;空空间;旋转控制;

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