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Journal ArticleDOI

Transient Stability Analysis of Large-Scale Power System by Lyapunov's Direct Method

Naoto Kakimoto, +3 more
- 01 Jan 1984 - 
- Vol. 103, Iss: 1, pp 160-167
TLDR
In this article, a method for reducing computation memory required by Lyapunov' s direct method has been presented, which is applied to transient stability studies of large-scale power systems containing more than 100 generators.
Abstract
In this paper, a method for reducing computation memory required by Lyapunov' s direct method has been presented. This requirement gets critical when the direct method is applied to transient stability studies of large-scale power systems containing more than 100 generators. Firstly, the system equations, the Lyapunov function, and the linear equations associated with the calculation of the stable equilibrium state, have been formulated in such way that the extreme sparcity of the network admittance matrix could be taken advantage of. Secondly, the programming techniques such as optimally ordered triangular factorization and efficient storage scheme of sparse matrices have been introduced. Lastly, the effectiveness of the method has been investigated with the 107-generator and 363-bus power system represented by the detail generator model including automatic voltage regulators ard power system stabilizers.

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Citations
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Direct methods for transient stability analysis of power systems: Recent results

TL;DR: In this paper, the authors provide a critical review of the Lyapunov direct method of transient stability analysis of power systems and propose on-line criteria suitable for online implementation.
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TL;DR: An online power system transient stability assessment problem is mapped as a two-class classification problem and a novel data mining algorithm the core vector machine the CVM is proposed to solve the problem based on phasor measurement units (PMUs) big data.
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Foundations of the potential energy boundary surface method for power system transient stability analysis

TL;DR: In this paper, a theoretical foundation for the potential energy boundary surface (PEBS) method for power system transient stability analysis is provided, and conditions under which the PEBS method gives good stability assessments are derived.
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Application of Energy-Based Power System Features for Dynamic Security Assessment

TL;DR: A novel approach to enable frequent computational cycles in online dynamic security assessment by using the terms of the transient energy function (TEF) as input features to a machine learning algorithm.
References
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Journal ArticleDOI

A Practical Method for the Direct Analysis of Transient Stability

TL;DR: In this paper, the authors describe the development and evaluation of an analytical method for the direct determination of transient stability, which is based on the analysis of transient energy and accounts for the nature of the system disturbance as well as for the effects of transfer conductances on systenmbehavior.
Journal ArticleDOI

Transient Stability Analysis of Multimachine Power System with Field Flux Decays via Lyapunov's Direct Method

TL;DR: In this article, Popov's stability criterion has been generalized to one for systems with multi-argument non-linearities, and a Lur'e type Lyapunov function has been constructed in a systematic method.
Journal ArticleDOI

An Optimal Ordering of Electronic Circuit Equations for a Sparse Matrix Solution

TL;DR: A node renumbering algorithm which is specifically directed at preserving the sparse structure of nodal admittance matrices during the solution by Gaussian elimination is described in detail.
Journal ArticleDOI

Transient Stability Analysis of Multi-Machine AC/DC Power Systems Via Energy-Function Method

TL;DR: In this article, a modified form of the energy-function method is used for the swing equations and the DC link dynamical equations to compute the critical clearing time for a given fault.
Proceedings ArticleDOI

Transient stability analysis of multimachine power system by Lyapunov's direct method

TL;DR: In this paper, a new critical value for the first swing stability was introduced and a method of calculating it as well as one of taking account of transfer conductances were developed for transient stability analysis of a 10-machine power system.
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