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Input-Output Structure

Daizhan Cheng (), Xiaoming Hu () and Tielong Shen ()
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Daizhan Cheng: Chinese Academy of Sciences, Academy of Mathematics & Systems Science
Xiaoming Hu: Royal Institute of Technology, Optimization and Systems Theory
Tielong Shen: Sophia University, Department of Engineering and Applied Sciences

Chapter Chapter 9 in Analysis and Design of Nonlinear Control Systems, 2010, pp 237-278 from Springer

Abstract: Abstract This chapter considers the structure of an affine nonlinear systems from a viewpoint of the relation between inputs and outputs. Section 9.1 considers the relative degree and the decoupling matrix. Section 9.2 considers the Morgan’s problem, that is, the input-output decoupling problem. The invertibility of the input-output mapping is discussed in Section 9.3. Section 9.4 provides a dynamic solution to Morgan’s problem. In Section 9.5 the Byrnes-Isidori normal form of nonlinear control systems is introduced. In Section 9.6 a generalization of Byrnes-Isidori normal form is provided. Section 9.7 presents the Fliess functional expansion, which describes the input-output behavior of nonlinear control systems. In Section 9.8 the Fliess functional expansion has been used to missile guide control.

Keywords: Relative Degree; Invariant Distribution; Nonlinear Control System; Dynamic Feedback; Dynamic Compensator (search for similar items in EconPapers)
Date: 2010
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-642-11550-9_9

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DOI: 10.1007/978-3-642-11550-9_9

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