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Step-by-Step Eigenvalue Analysis With EMTP discrete-time Solutions

delete2010-08-01
delete37
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OA
AI
J
Jorge A. Hollman *
J
José R. Martí
DOI:10.1109/TPWRS.2009.2039810delete
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摘要

摘要

En 中文
This paper presents a methodology to obtain a discrete-time state-space representation of an electrical network using the nodal [G] matrix of the Electromagnetic Transients Program (EMTP) solution. Compared with conventional state-space solutions, the nodal EMTP solution is computationally very efficient. Compared with the phasor solutions used in transient stability analysis, the proposed approach may capture a wider range of eigenvalues and system operating states. An important advantage of extracting the system eigenvalues from the EMTP solution is the ability of the EMTP to follow the characteristics of nonlinearities. In addition, the algorithm can be used as a tool to identify network partitioning subsystems suitable for real-time hybrid power system simulator environments, including the implementation of multitime-scale solutions. The proposed technique can be implemented as an extension of an EMTP-based simulator. Within our research group at UBC, it is aimed at extending the capabilities of our real-time PC-cluster Object Virtual Network Integrator (OVNI) simulator.
Keyword:
Electromagnetic Transients Program (EMTP)
Object Virtual Network Integrator (OVNI)
power system simulation
real-time
state-space

期刊

IEEE Transactions on Power Systems 封面图
IEEE Transactions on Power Systems
IF:
7.2
论文数:
1.1W
被引数:
5.0W

机构

U
University of British Columbia
学者数:
7.0W
论文数: 6.1W
被引数: 8.6W
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