Small-signal stability analysis of photovoltaic generation connected to weak AC grid

Abstract A small-signal model of photovoltaic (PV) generation connected to weak AC grid is established based on a detailed model of the structure and connection of a PV generation system. An eigenvalue analysis is then employed to study the stability of PV generation for different grid strengths and...

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Main Authors: Qi JIA, Gangui YAN, Yuru CAI, Yonglin LI, Jinhao ZHANG
Format: Article
Language:English
Published: IEEE 2018-06-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:http://link.springer.com/article/10.1007/s40565-018-0415-3
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spelling doaj-cb006d7bd2964fb3bcf4f617f70beb922021-05-03T00:38:21ZengIEEEJournal of Modern Power Systems and Clean Energy2196-56252196-54202018-06-017225426710.1007/s40565-018-0415-3Small-signal stability analysis of photovoltaic generation connected to weak AC gridQi JIA0Gangui YAN1Yuru CAI2Yonglin LI3Jinhao ZHANG4Northeast Electric Power UniversityNortheast Electric Power UniversityNortheast Electric Power UniversityNortheast Electric Power UniversityNortheast Electric Power UniversityAbstract A small-signal model of photovoltaic (PV) generation connected to weak AC grid is established based on a detailed model of the structure and connection of a PV generation system. An eigenvalue analysis is then employed to study the stability of PV generation for different grid strengths and control parameters in a phase-locked loop (PLL) controller in the voltage source converter. The transfer function of the power control loop in the dq rotation frame is developed to reveal the influence mechanism of PLL gains on the small-signal stability of PV generation. The results can be summarized as follows: ① oscillation phenomena at a frequency of about 5 Hz may occur when the grid strength is low; ② the tuning control parameters of the PLL have a noticeable effect on the damping characteristics of the system, and larger proportional gain can improve the system damping;③ within a frequency range of 4-5 Hz, the PLL controller has positive feedback on the power loop of PV generation. A virtual inductance control strategy is proposed to improve the operational stability of PV generation. Finally, a simulation model of PV generation connected to weak AC grid is built in PSCAD/EMTDC and the simulation results are used to validate the analysis.http://link.springer.com/article/10.1007/s40565-018-0415-3Photovoltaic generationWeak AC gridSmall-signal modelEigenvalue analysisVirtual inductance control strategy
collection DOAJ
language English
format Article
sources DOAJ
author Qi JIA
Gangui YAN
Yuru CAI
Yonglin LI
Jinhao ZHANG
spellingShingle Qi JIA
Gangui YAN
Yuru CAI
Yonglin LI
Jinhao ZHANG
Small-signal stability analysis of photovoltaic generation connected to weak AC grid
Journal of Modern Power Systems and Clean Energy
Photovoltaic generation
Weak AC grid
Small-signal model
Eigenvalue analysis
Virtual inductance control strategy
author_facet Qi JIA
Gangui YAN
Yuru CAI
Yonglin LI
Jinhao ZHANG
author_sort Qi JIA
title Small-signal stability analysis of photovoltaic generation connected to weak AC grid
title_short Small-signal stability analysis of photovoltaic generation connected to weak AC grid
title_full Small-signal stability analysis of photovoltaic generation connected to weak AC grid
title_fullStr Small-signal stability analysis of photovoltaic generation connected to weak AC grid
title_full_unstemmed Small-signal stability analysis of photovoltaic generation connected to weak AC grid
title_sort small-signal stability analysis of photovoltaic generation connected to weak ac grid
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5625
2196-5420
publishDate 2018-06-01
description Abstract A small-signal model of photovoltaic (PV) generation connected to weak AC grid is established based on a detailed model of the structure and connection of a PV generation system. An eigenvalue analysis is then employed to study the stability of PV generation for different grid strengths and control parameters in a phase-locked loop (PLL) controller in the voltage source converter. The transfer function of the power control loop in the dq rotation frame is developed to reveal the influence mechanism of PLL gains on the small-signal stability of PV generation. The results can be summarized as follows: ① oscillation phenomena at a frequency of about 5 Hz may occur when the grid strength is low; ② the tuning control parameters of the PLL have a noticeable effect on the damping characteristics of the system, and larger proportional gain can improve the system damping;③ within a frequency range of 4-5 Hz, the PLL controller has positive feedback on the power loop of PV generation. A virtual inductance control strategy is proposed to improve the operational stability of PV generation. Finally, a simulation model of PV generation connected to weak AC grid is built in PSCAD/EMTDC and the simulation results are used to validate the analysis.
topic Photovoltaic generation
Weak AC grid
Small-signal model
Eigenvalue analysis
Virtual inductance control strategy
url http://link.springer.com/article/10.1007/s40565-018-0415-3
work_keys_str_mv AT qijia smallsignalstabilityanalysisofphotovoltaicgenerationconnectedtoweakacgrid
AT ganguiyan smallsignalstabilityanalysisofphotovoltaicgenerationconnectedtoweakacgrid
AT yurucai smallsignalstabilityanalysisofphotovoltaicgenerationconnectedtoweakacgrid
AT yonglinli smallsignalstabilityanalysisofphotovoltaicgenerationconnectedtoweakacgrid
AT jinhaozhang smallsignalstabilityanalysisofphotovoltaicgenerationconnectedtoweakacgrid
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