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Routh approximations for reducing order of linear, time-invariant systems

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TLDR
The Routh table of the original transfer function has been used in this article to approximate the transfer function of a high-order linear system by one of lower-order lower order.
Abstract
A new method of approximating the transfer function of a high-order linear system by one of lower order is proposed. Called the "Routh approximation method" because it is based on an expansion that uses the Routh table of the original transfer function, the method has a number of useful properties: if the original transfer function is stable, then all approximants are stable; the sequence of approximants converge monotonically to the original in terms of "impulse response" energy; the approximants are partial Pade approximants in the sense that the first k coefficients of the power series expansions of the k th-order approximant and of the original are equal; the poles and zeros of the approximants move toward the poles and zeros of the original as the order of the approximation is increased. A numerical example is given for the calculation of the Routh approximants of a fourth-order transfer function and for illustration of some of the properties.

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Citations
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Journal ArticleDOI

Singular perturbations and order reduction in control theory - An overview

TL;DR: The content of main theorems is presented in a tutorial form aimed at a broad audience of engineers and applied mathematicians interested in control, estimation and optimization of dynamic systems.
Journal ArticleDOI

Load Frequency Control in Power Systems via Internal Model Control Scheme and Model-Order Reduction

TL;DR: In this paper, a simple approach to load frequency control (LFC) design for the power systems having parameter uncertainty and load disturbance is proposed, which is based on two-degree-of-freedom, internal model control (IMC) scheme, which unifies the concept of model-order reduction like Routh and Pade approximations.
Journal ArticleDOI

Model reduction using the Routh stability criterion

TL;DR: In this paper, a new method of model reduction based on the Routh stability criterion is introduced, where the reduced order transfer function is determined directly from elements in the stability arrays of the high-order denominator and numerator.
Dissertation

Multiobjective genetic algorithms with application to control engineering problems.

TL;DR: This work reinterpreted multiobjective optimization with genetic algorithms as a sequence of decision making problems interleaved with search steps, in order to accommodate previous work in the field and develops a unified approach to multiple objective and constraint handling with genetic algorithm.
Journal ArticleDOI

A note on the derivation and use of reduced-order models

TL;DR: In view of the particular interest in the problem of reduced-order modeling in recent years, some considerations not sufficiently investigated in current literature are pointed out and a comprehensive set of references is given.
References
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Journal ArticleDOI

On "A method for simplifying linear dynamic systems"

TL;DR: A method is proposed for reducing large matrices by constructing a matrix of lower order which has the same dominant eigenvalues and eigenvectors as the original system.
Journal ArticleDOI

A novel approach to linear model simplification

TL;DR: In this article, a model simplification approach for high-order transfer functions is presented. But it does not cover the general analysis of linear systems and is not suitable for general linear systems.
Journal ArticleDOI

Stable reduced-order models using Padé-type approximations

TL;DR: In this paper, an algorithm is introduced which ensures that the reduced-order model derived by equating time-moments and by continued fraction synthesis will be stable, assuming the high-order system is stable.
Journal ArticleDOI

The minimal orbit in a simple Lie algebra and its associated maximal ideal

TL;DR: In this article, it was shown that there exists a unique completely prime, two-sided ideal Jo of U (9) whose characteristic variety coincides with OQ u { 0 }.
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