Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter
The dq impedance stability analysis for a grid-connected current-control inverter is based on the impedance ratio matrix. However, the coupled matrix brings difficulties in deriving its eigenvalues for the analysis based on the general Nyquist criterion. If the couplings are ignored for simplificati...
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doaj-d7ba198a8f91445d8a9de5b4558f25af2020-11-25T02:22:04ZengMDPI AGEnergies1996-10732019-09-011219367610.3390/en12193676en12193676Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected InverterChuanyue Li0Taoufik Qoria1Frederic Colas2Jun Liang3Wenlong Ming4Francois Gruson5Xavier Guillaud6Laboratory of Electricl Engineering and Power Electronics (L2EP), 59046 Lille, FranceLaboratory of Electricl Engineering and Power Electronics (L2EP), 59046 Lille, FranceLaboratory of Electricl Engineering and Power Electronics (L2EP), 59046 Lille, FranceSchool of Engineering, Cardiff University, Cardiff CF24 3AA, UKSchool of Engineering, Cardiff University, Cardiff CF24 3AA, UKLaboratory of Electricl Engineering and Power Electronics (L2EP), 59046 Lille, FranceLaboratory of Electricl Engineering and Power Electronics (L2EP), 59046 Lille, FranceThe dq impedance stability analysis for a grid-connected current-control inverter is based on the impedance ratio matrix. However, the coupled matrix brings difficulties in deriving its eigenvalues for the analysis based on the general Nyquist criterion. If the couplings are ignored for simplification, unacceptable errors will be present in the analysis. In this paper, the influence of the couplings on the dq impedance stability analysis is studied. To take the couplings into account simply, the determinant-based impedance stability analysis is used. The mechanism between the determinant of the impedance-ratio matrix and the inverter stability is unveiled. Compared to the eigenvalues-based analysis, only one determinant rather than two eigenvalue s-function is required for the stability analysis. One Nyquist plot or pole map can be applied to the determinant to check the right-half-plane poles. The accuracy of the determinant-based stability analysis is also checked by comparing with the state-space stability analysis method. For the stability analysis, the coupling influence on the current control, the phase-locked loop, and the grid impedance are studied. The errors can be 10% in the stability analysis if the couplings are ignored.https://www.mdpi.com/1996-1073/12/19/3676impedance stability analysisvscsmall-signal modelling |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chuanyue Li Taoufik Qoria Frederic Colas Jun Liang Wenlong Ming Francois Gruson Xavier Guillaud |
spellingShingle |
Chuanyue Li Taoufik Qoria Frederic Colas Jun Liang Wenlong Ming Francois Gruson Xavier Guillaud Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter Energies impedance stability analysis vsc small-signal modelling |
author_facet |
Chuanyue Li Taoufik Qoria Frederic Colas Jun Liang Wenlong Ming Francois Gruson Xavier Guillaud |
author_sort |
Chuanyue Li |
title |
Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter |
title_short |
Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter |
title_full |
Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter |
title_fullStr |
Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter |
title_full_unstemmed |
Coupling Influence on the dq Impedance Stability Analysis for the Three-Phase Grid-Connected Inverter |
title_sort |
coupling influence on the dq impedance stability analysis for the three-phase grid-connected inverter |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-09-01 |
description |
The dq impedance stability analysis for a grid-connected current-control inverter is based on the impedance ratio matrix. However, the coupled matrix brings difficulties in deriving its eigenvalues for the analysis based on the general Nyquist criterion. If the couplings are ignored for simplification, unacceptable errors will be present in the analysis. In this paper, the influence of the couplings on the dq impedance stability analysis is studied. To take the couplings into account simply, the determinant-based impedance stability analysis is used. The mechanism between the determinant of the impedance-ratio matrix and the inverter stability is unveiled. Compared to the eigenvalues-based analysis, only one determinant rather than two eigenvalue s-function is required for the stability analysis. One Nyquist plot or pole map can be applied to the determinant to check the right-half-plane poles. The accuracy of the determinant-based stability analysis is also checked by comparing with the state-space stability analysis method. For the stability analysis, the coupling influence on the current control, the phase-locked loop, and the grid impedance are studied. The errors can be 10% in the stability analysis if the couplings are ignored. |
topic |
impedance stability analysis vsc small-signal modelling |
url |
https://www.mdpi.com/1996-1073/12/19/3676 |
work_keys_str_mv |
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