This book provides a comprehensive treatment of the nonlinear output regulation problem. It contains up-to-date research results and algorithms and tools for approaching and solving this and other related problems. Output regulation is a general mathematical formulation of many control problems encountered in daily life, including cruise control of automobiles, landing and takeoff of aircraft, manipulation of robot arms, orbiting of satellites, and speed regulation of motors. In addition to the previously obtained results on the output regulation problem is the newly developed general framework that converts the robust output regulation problem for a given nonlinear system into a robust stabilization problem for an augmented system. This general framework is based on the construction of nonlinear internal models and offers greater flexibility to incorporate recent new stabilization techniques, thus setting the stage for systematically tackling robust output regulation with global stability.
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This book provides a comprehensive and in-depth treatment of one of the most important control problems: the nonlinear output regulation problem. It contains up-to-date research results and algorithms and tools for approaching and solving the output regulation problem and other related problems, such as robust stabilization of nonlinear systems.About the Author:
Jie Huang is a Professor in the Department of Automation and Computer-Aided Engineering and Director of the Applied Control and Computer Laboratory at The Chinese University of Hong Kong. He also holds a professorship at the South China University of Technology sponsored by the Cheung Kong Scholar Award Program, Ministry of Chinese Education. His research interests include nonlinear control theory and applications, industrial control and automation, scientific computing, Internet-based control, and guidance and control of flight vehicles. He has published over 100 papers in international journals and conference proceedings. Dr. Huang is a member of the Editorial Board of Communications in Information and Systems, Executive Editor of Control Theory and Applications, and Associate Editor of the IEEE Transactions on Automatic Control.
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