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研究含有测量时滞的线性系统的故障诊断和自修复控制问题。提出了一种测量时滞系统基于降维状态观测器的故障诊断方法。-The problems of fault diagnosis and self-restore control were studied for linear systems with delayed measurements. A reduced-order observer-based fault diagnosis approach was proposed for syste
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通过构造含有故障状态的增广系统并进行增广系统测量时滞的无时滞转换,将测量时滞系统的故障诊断问题转化为无时滞增广系统的状态观测问题。-The problems of fault diagnosis and self-restore control were studied for linear systems with delayed measurements. A reduced-order observer-based fault diagnosis approach was proposed
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研究含有测量时滞的线性系统的故障诊断和自修复控制问题。提出了一种测量时滞系统基于降维状态观测器的故障诊断方法。通过构造含有故障状态的增广系统并进行增广系统测量时
滞的无时滞转换,将测量时滞系统的故障诊断问题转化为无时滞增广系统的状态观测问题。-The problems of fault diagnosis and self-restore control were studied for linear systems with delayed measurements. A reduced-
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Sliding-mode observers can be constructed for systems with unknown inputs if the so-called observer matching condition is satisfied. However, most systems do not satisfy this condition. To construct sliding mode observers for systems that do not sati
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Abstract-This paper proposes an adaptive robust fuzzy controller for the tracking problem of a class of uncertain nonlinear MIMO systems. The control signal is comprised of two parts. One part is an adaptive fuzzy controller which approximates the sy
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机电传感器通常用于获取转子位置/速度的内置式永磁同步电机( IPMSMs )的高性能控制
车辆系统。然而,使用这些传感器中的增加的成本,尺寸,重量,布线复杂性并减少了IPMSM驱动系统的机械鲁棒性。这些问题连同
一些实用的要求,例如,调速范围广,极端
环境温度和不利的负载条件下,使传感器控制方案可取。本文提出了一种扩展的反电动势( EMF )为基础的滑模
转子位置观测器IPMSMs的无传感器矢量控制。
基于滤波器的特性,一个强大的补偿算法的开发,以改善滑动方式观测器(SMO)
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matlab LMI code The paper deals with the problems of designing observers and unknown input observers for discrete-time Lipschitz
non-linear systems. In particular, with the use of the Lyapunov method, three different convergence criteria of the obs
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系统论述了滑模变结构控制的基本理论、基本方法和应用技术,并全部给出了MATLAB仿真分析。全书内容涵盖了滑模变结构控制发展综述、连续系统滑模控制、自适应鲁棒滑模控制、欠驱动系统滑模控制、反演及动态面滑模控制、基于滤波器及观测器的滑模控制、离散系统滑模控制、模糊滑模控制、神经滑模控制和机械手滑模控制等。-The basic theory, basic method and application technology of sliding mode variable structure contr
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