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1 adaptive output feedback controller for minimum phase systems
2011 Edition, June 1, 2011 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

This paper presents an £1 adaptive output feed back controller for a class of uncertain nonlinear systems in the presence of time and output dependent unknown nonlinearities. As compared to earlier introduced £1 adaptive output...

Structural non-minimum phase systems
2016 Edition, July 1, 2016 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

Recently, there is increasing research interest in investigation of structural properties, especially in the complex networks domain, i. e. [10]. For analysis of large sparse systems or systems with parameter uncertainty the structural approach gives an early indication of...

Predictive control of non-minimum phase systems
2014 Edition, May 1, 2014 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

A predictive controller is a modern type of a regulator which is appropriate for many characters of processes. Non-minimum phase systems contain an undershoot in the initial part of its dynamic behaviour. The traditional approach in predictive control of...

Perfect tracking for non-minimum phase systems
2010 Edition, June 1, 2010 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

A controller architecture is developed that can provide perfect reference tracking for both minimum phase and non-minimum phase systems with time delays when there are no modeling errors or external disturbances. The perfect tracking property is...

Stochastic Realization of Non-Minimum Phase Systems
1986 Edition, June 1, 1986 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

In this paper we present a stochastic realization method for linear, time-invariant, non-minimum phase systems when only output data are available. The input sequence need not be independent and identically distributed. It must be non-Gaussian, with some special...

New sliding mode control for non-minimum phase systems
2017 Edition, March 1, 2017 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

Many of the modern industrial processes are non-minimum phase systems. Therefore, the synthesis of a robust control is a prerequisite for this type of systems. In this paper, a discrete sliding mode control for non-minimum phase systems...

On partially minimum phase systems and nonlinear sampled-data control
2017 Edition, December 1, 2017 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

The concept of partially minimum phase systems is introduced and used with reference to the class of nonlinear systems exhibiting a linear output. It turns out that input-output feedback linearization with stability of the internal dynamics can be...

Ill-Conditioning of non-minimum phase systems
1996 Edition, September 1, 1996 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

The typical inverse problem is the recovery of the input, x, given data, y and the knowledge of the system A. Such problems occur frequently in instrumental science. For the Linear Time Invariant (LTT) systems the governing equation can be expressed in matrix form, y=Ax. In...

Hybrid fuzzy controllers for non-minimum phase systems
2012 Edition, May 1, 2012 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

The class of non-minimum phase systems modeled by transfer functions with "unstable" zeros is considered as a controlled plant in control systems. The stabilization and control of this class of systems is difficult stabilizing because of the unusual behavior in...

Revisit Nyquist-Bode Stability Criteria for Power Electronic System with Non-minimum Phase System
2019 Edition, November 1, 2019 - IEEE - Institute of Electrical and Electronics Engineers, Inc.

After a long period of development, stability criteria are gradually improved. Among them, Nyquist-Bode stability criterion plays an important role. However, traditional Nyquist stability criterion is only applicable to minimum phase system. With the development and wide...

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