Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System

Series capacitor compensation is used to improve the utilization of existing power systems. Subsynchronous resonance (SSR) can be caused by series compensated lines, which would lead to turbogenerator shaft breakdown. A novel approach was presented in this paper to analyze the characteristics and in...

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Main Authors: Chengbing He, Dakang Sun, Lei Song, Li Ma
Format: Article
Language:English
Published: MDPI AG 2019-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/17/3282
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spelling doaj-778600a0705e4edfb5f560ac5ad7c63b2020-11-25T01:11:34ZengMDPI AGEnergies1996-10732019-08-011217328210.3390/en12173282en12173282Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission SystemChengbing He0Dakang Sun1Lei Song2Li Ma3School of Energy, Power and Mechanical Engineering, North China Electric Power University, Beijing 102206, ChinaInformation Technology Department, Guodian Nanjing Automation Corporation, Nanjing 210000, ChinaTechnology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing 102206, ChinaSchool of Energy, Power and Mechanical Engineering, North China Electric Power University, Beijing 102206, ChinaSeries capacitor compensation is used to improve the utilization of existing power systems. Subsynchronous resonance (SSR) can be caused by series compensated lines, which would lead to turbogenerator shaft breakdown. A novel approach was presented in this paper to analyze the characteristics and influence factors of SSR in a series compensated transmission system. The system model of SSR, including the various modules of the electromechanical network, was established, and the eigenvalue results under 70% series compensation level were analyzed by eigenvalue analysis method for the the institute of electrical and electronics engineers (IEEE) first benchmark model (FBM). Compared with the results of the power systems computer-aided design (PSCAD) modeling and simulation, the effectiveness of eigenvalue analysis method was proven. After that, the eigenvalue analysis method was used to study, in detail, the effects of system series compensation levels, synchronous generator parameters, speed governing system parameters, and excitation system parameters on SSR characteristics. The research results show that the series compensation level has the greatest influence on the torsional mode damping of the system. The parameters of generator reactance, speed governing system, and excitation system have some effect on the torsional mode damping. The parameters of excitation system significantly affect the low-frequency oscillation damping.https://www.mdpi.com/1996-1073/12/17/3282eigenvalue analysis methodseries compensated transmissionsubsynchronous resonance (SSR)torsional mode (TM)
collection DOAJ
language English
format Article
sources DOAJ
author Chengbing He
Dakang Sun
Lei Song
Li Ma
spellingShingle Chengbing He
Dakang Sun
Lei Song
Li Ma
Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
Energies
eigenvalue analysis method
series compensated transmission
subsynchronous resonance (SSR)
torsional mode (TM)
author_facet Chengbing He
Dakang Sun
Lei Song
Li Ma
author_sort Chengbing He
title Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
title_short Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
title_full Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
title_fullStr Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
title_full_unstemmed Analysis of Subsynchronous Resonance Characteristics and Influence Factors in a Series Compensated Transmission System
title_sort analysis of subsynchronous resonance characteristics and influence factors in a series compensated transmission system
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-08-01
description Series capacitor compensation is used to improve the utilization of existing power systems. Subsynchronous resonance (SSR) can be caused by series compensated lines, which would lead to turbogenerator shaft breakdown. A novel approach was presented in this paper to analyze the characteristics and influence factors of SSR in a series compensated transmission system. The system model of SSR, including the various modules of the electromechanical network, was established, and the eigenvalue results under 70% series compensation level were analyzed by eigenvalue analysis method for the the institute of electrical and electronics engineers (IEEE) first benchmark model (FBM). Compared with the results of the power systems computer-aided design (PSCAD) modeling and simulation, the effectiveness of eigenvalue analysis method was proven. After that, the eigenvalue analysis method was used to study, in detail, the effects of system series compensation levels, synchronous generator parameters, speed governing system parameters, and excitation system parameters on SSR characteristics. The research results show that the series compensation level has the greatest influence on the torsional mode damping of the system. The parameters of generator reactance, speed governing system, and excitation system have some effect on the torsional mode damping. The parameters of excitation system significantly affect the low-frequency oscillation damping.
topic eigenvalue analysis method
series compensated transmission
subsynchronous resonance (SSR)
torsional mode (TM)
url https://www.mdpi.com/1996-1073/12/17/3282
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AT dakangsun analysisofsubsynchronousresonancecharacteristicsandinfluencefactorsinaseriescompensatedtransmissionsystem
AT leisong analysisofsubsynchronousresonancecharacteristicsandinfluencefactorsinaseriescompensatedtransmissionsystem
AT lima analysisofsubsynchronousresonancecharacteristicsandinfluencefactorsinaseriescompensatedtransmissionsystem
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