Disturbance observer- based control : methods and applications

著者

    • Li, Shihua (Engineer)
    • Yang, Jun
    • Chen, Wen-hua
    • Chen, Xisong

書誌事項

Disturbance observer- based control : methods and applications

Shihua Li ... [et al.]

CRC Press, c2014

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注記

Other authors: Jun Yang, Wen-Hua Chen, Xisong Chen

Includes bibliographical references (p. 301-312) and index

内容説明・目次

内容説明

Due to its abilities to compensate disturbances and uncertainties, disturbance observer based control (DOBC) is regarded as one of the most promising approaches for disturbance-attenuation. One of the first books on DOBC, Disturbance Observer Based Control: Methods and Applications presents novel theory results as well as best practices for applications in motion and process control that have already benefited numerous organizations. Supplying authoritative guidance in the areas of disturbance estimation and compensation for practical engineering systems, the book includes coverage of theoretic methods and practical applications of disturbance estimation and compensation for control systems through a DOBC approach. It considers applications in flight control systems, motion control systems, and process control systems. Supplies an authoritative overview of disturbance observer based control approaches Reports on recent developments in disturbance estimation techniques Considers matched and mismatched disturbance/uncertainty attenuation for DOBC Illustrates applications of the methods covered with detailed engineering case studies Filled with valuable insights gathered over decades of research by the authors, this book provides time- and stress-saving guidance for anyone interested in the theory and method research of DOBC. Using typical engineering examples, the text provides readers with an understanding of recent developments in DOBC as well as the tools required to make the most of this promising approach to disturbance-attenuation.

目次

OVERVIEW. An Overview on Disturbance Observer Based Control. DISTURBANCE ESTIMATION METHODS. Linear Disturbance Estimator. Traditional Nonlinear Disturbance Observer. Advanced Nonlinear Disturbance Observer. DISTURBANCE COMPENSATION METHODS. Disturbance Compensation for Mismatched Uncertain System. Disturbance Compensation for Nonlinear Systems with Arbitrary Disturbance relative Degree. Disturbance Observer Based Sliding-Mode Control. Disturbance Observer Based Mode Predictive Control. APPLICATION CASE STUDIES. DOBC for Grinding Classification Processes. DOBC for MAGLEV Suspension System. Active Disturbance Control for PMSM System. Disturbance Rejection Oriented Autopilot Design for Bank-to-Turn Missiles. Disturbance Rejection for Air-Breathing Hypersonic Vehicles.

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