Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances

With the integration of large-scale renewable energy and various new types of loads, the stochastic fluctuation characteristic of the power has seriously affected the secure and stable operation of interconnected power grids. In addition to active power fluctuations of AC tie-lines that have been st...

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Main Authors: Yiping Yu, Ping Ju, Yan Peng, Boliang Lou, Hongyang Huang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8935455/
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spelling doaj-ab18836bf91d4f5596a04013bdd560262021-04-23T16:14:14ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202020-01-0181384510.35833/MPCE.2018.0006938935455Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power DisturbancesYiping Yu0Ping Ju1Yan Peng2Boliang Lou3Hongyang Huang4College of Energy and Electrical Engineering, Hohai University,Nanjing,China,211100College of Energy and Electrical Engineering, Hohai University,Nanjing,China,211100State Grid Zhejiang Electric Power Corporation,Hangzhou,China,310014State Grid Zhejiang Electric Power Corporation,Hangzhou,China,310014State Grid Zhejiang Electric Power Corporation,Hangzhou,China,310014With the integration of large-scale renewable energy and various new types of loads, the stochastic fluctuation characteristic of the power has seriously affected the secure and stable operation of interconnected power grids. In addition to active power fluctuations of AC tie-lines that have been studied in the past, the problem of dynamic fluctuation of bus voltage is also increasingly prominent. Firstly, the typical power fluctuations of electric railway traction load, smelting load, and wind power generation in modern power systems are presented and the accompanying voltage fluctuations are analyzed. Secondly, the dynamic fluctuation mechanism and distribution characteristic of the system voltage under special forced oscillation and generalized forced oscillation are studied. It is found that when the periodic disturbance induces a special forced oscillation, the voltage fluctuation has the same mode information compared to the power angle fluctuation. And it also has obvious peak characteristics near the natural frequency. When the stochastic disturbance induces generalized forced oscillation, the voltage fluctuations can be decomposed into proportional and resonant components according to its frequency domain characteristic. Finally, the above conclusions are verified by the simulation results of an IEEE 4-generator 2-area system.https://ieeexplore.ieee.org/document/8935455/Stochastic power disturbancedynamic voltage fluctuationspecial forced oscillationgeneralized forced oscillationdynamic fluctuation mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Yiping Yu
Ping Ju
Yan Peng
Boliang Lou
Hongyang Huang
spellingShingle Yiping Yu
Ping Ju
Yan Peng
Boliang Lou
Hongyang Huang
Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
Journal of Modern Power Systems and Clean Energy
Stochastic power disturbance
dynamic voltage fluctuation
special forced oscillation
generalized forced oscillation
dynamic fluctuation mechanism
author_facet Yiping Yu
Ping Ju
Yan Peng
Boliang Lou
Hongyang Huang
author_sort Yiping Yu
title Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
title_short Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
title_full Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
title_fullStr Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
title_full_unstemmed Analysis of Dynamic Voltage Fluctuation Mechanism in Interconnected Power Grid with Stochastic Power Disturbances
title_sort analysis of dynamic voltage fluctuation mechanism in interconnected power grid with stochastic power disturbances
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2020-01-01
description With the integration of large-scale renewable energy and various new types of loads, the stochastic fluctuation characteristic of the power has seriously affected the secure and stable operation of interconnected power grids. In addition to active power fluctuations of AC tie-lines that have been studied in the past, the problem of dynamic fluctuation of bus voltage is also increasingly prominent. Firstly, the typical power fluctuations of electric railway traction load, smelting load, and wind power generation in modern power systems are presented and the accompanying voltage fluctuations are analyzed. Secondly, the dynamic fluctuation mechanism and distribution characteristic of the system voltage under special forced oscillation and generalized forced oscillation are studied. It is found that when the periodic disturbance induces a special forced oscillation, the voltage fluctuation has the same mode information compared to the power angle fluctuation. And it also has obvious peak characteristics near the natural frequency. When the stochastic disturbance induces generalized forced oscillation, the voltage fluctuations can be decomposed into proportional and resonant components according to its frequency domain characteristic. Finally, the above conclusions are verified by the simulation results of an IEEE 4-generator 2-area system.
topic Stochastic power disturbance
dynamic voltage fluctuation
special forced oscillation
generalized forced oscillation
dynamic fluctuation mechanism
url https://ieeexplore.ieee.org/document/8935455/
work_keys_str_mv AT yipingyu analysisofdynamicvoltagefluctuationmechanismininterconnectedpowergridwithstochasticpowerdisturbances
AT pingju analysisofdynamicvoltagefluctuationmechanismininterconnectedpowergridwithstochasticpowerdisturbances
AT yanpeng analysisofdynamicvoltagefluctuationmechanismininterconnectedpowergridwithstochasticpowerdisturbances
AT bolianglou analysisofdynamicvoltagefluctuationmechanismininterconnectedpowergridwithstochasticpowerdisturbances
AT hongyanghuang analysisofdynamicvoltagefluctuationmechanismininterconnectedpowergridwithstochasticpowerdisturbances
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