Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions
Parallel photovoltaic inverters system can increase the power rating and efficiency. However, the zero-sequence circulating current (ZSCC) will be generated under unbalanced conditions. Therefore, this paper proposes a ZSCC control scheme for the M-paralleled (M ≥ 3) inverters under unbal...
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doaj-accf07011e3b4c4fad2f6d3c893fa37a2021-03-29T21:36:55ZengIEEEIEEE Access2169-35362018-01-016691206912910.1109/ACCESS.2018.28779558509566Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced ConditionsHua Chen0Xiangyang Xing1https://orcid.org/0000-0001-7078-7783Department of Electrical Engineering, Shandong Labor Vocational and Technical College, Jinan, ChinaDepartment of Control Science and Engineering, Shandong University, Jinan, ChinaParallel photovoltaic inverters system can increase the power rating and efficiency. However, the zero-sequence circulating current (ZSCC) will be generated under unbalanced conditions. Therefore, this paper proposes a ZSCC control scheme for the M-paralleled (M ≥ 3) inverters under unbalanced grid voltage and unbalanced filter parameters. Based on the analysis with the proposed generalized model of parallel inverters, it is observed that the ZSCC of the ith inverter is influenced by the output currents, filter parameters, duty cycles and ZSCCs of the ith and first inverters. To eliminate these adverse effects on the ZSCC control loop, a decoupled controller consisting of modified input type PI-quasi-resonant and the feedforward controller is proposed. The modified input type PI-quasi-resonant controller mitigates the effects of the output currents, filter parameters, and ZSCCs, meanwhile, the feed-forward controller is employed to eliminate the difference of duty cycles. Compared with the conventional PI control method, the ZSCC is effectively suppressed with the proposed scheme, thus improving the quality of the currents. Moreover, the reliability of the paralleled system is improved because such scheme only needs the information of the ith and the first inverters. Simulation and experimental results obtained from three-paralleled inverters validate the effectiveness of theoretical analysis and the proposed method.https://ieeexplore.ieee.org/document/8509566/Circulating current suppressionunbalanced conditionsmodule invertersdecoupled controller |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hua Chen Xiangyang Xing |
spellingShingle |
Hua Chen Xiangyang Xing Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions IEEE Access Circulating current suppression unbalanced conditions module inverters decoupled controller |
author_facet |
Hua Chen Xiangyang Xing |
author_sort |
Hua Chen |
title |
Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions |
title_short |
Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions |
title_full |
Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions |
title_fullStr |
Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions |
title_full_unstemmed |
Circulating Current Analysis and Suppression for Module Grid-Connected Inverters Under Unbalanced Conditions |
title_sort |
circulating current analysis and suppression for module grid-connected inverters under unbalanced conditions |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2018-01-01 |
description |
Parallel photovoltaic inverters system can increase the power rating and efficiency. However, the zero-sequence circulating current (ZSCC) will be generated under unbalanced conditions. Therefore, this paper proposes a ZSCC control scheme for the M-paralleled (M ≥ 3) inverters under unbalanced grid voltage and unbalanced filter parameters. Based on the analysis with the proposed generalized model of parallel inverters, it is observed that the ZSCC of the ith inverter is influenced by the output currents, filter parameters, duty cycles and ZSCCs of the ith and first inverters. To eliminate these adverse effects on the ZSCC control loop, a decoupled controller consisting of modified input type PI-quasi-resonant and the feedforward controller is proposed. The modified input type PI-quasi-resonant controller mitigates the effects of the output currents, filter parameters, and ZSCCs, meanwhile, the feed-forward controller is employed to eliminate the difference of duty cycles. Compared with the conventional PI control method, the ZSCC is effectively suppressed with the proposed scheme, thus improving the quality of the currents. Moreover, the reliability of the paralleled system is improved because such scheme only needs the information of the ith and the first inverters. Simulation and experimental results obtained from three-paralleled inverters validate the effectiveness of theoretical analysis and the proposed method. |
topic |
Circulating current suppression unbalanced conditions module inverters decoupled controller |
url |
https://ieeexplore.ieee.org/document/8509566/ |
work_keys_str_mv |
AT huachen circulatingcurrentanalysisandsuppressionformodulegridconnectedinvertersunderunbalancedconditions AT xiangyangxing circulatingcurrentanalysisandsuppressionformodulegridconnectedinvertersunderunbalancedconditions |
_version_ |
1724192681469411328 |