Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants
The amplitude and phase angle of the fault current in photovoltaic power plants (PVPPs) are significantly influenced by the control system of the grid-connected inverters, unlike in a conventional synchronous source. Hence, PVPPs may adversely affect the performance of the current differential prote...
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doaj-03769ca4a324438ab989c45eed9d3f8d2020-11-25T01:38:34ZengMDPI AGSustainability2071-10502020-02-01124143610.3390/su12041436su12041436Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power PlantsYingyu Liang0Wulin Li1Guanjun Xu2School of Mechanical Electronic and Information Engineering, China University of Mining and Technology, Beijing 100083, ChinaSchool of Mechanical Electronic and Information Engineering, China University of Mining and Technology, Beijing 100083, ChinaNARI Group Corporation (State Grid Electric Power Research Institute), Nanjing 211000, ChinaThe amplitude and phase angle of the fault current in photovoltaic power plants (PVPPs) are significantly influenced by the control system of the grid-connected inverters, unlike in a conventional synchronous source. Hence, PVPPs may adversely affect the performance of the current differential protection designed for synchronous sources-based power grids. In order to study the performance problem of current differential protection on AC transmission lines, an analytical expression of the fault current in the PVPPs was deduced, and the fault current characteristic was extensively analyzed. Based on this analysis, the ratio of differential current over restraint current was initially derived in this study; this ratio is observed to be affected by the control system parameters, power grid system parameters, fault resistance, and fault types. Moreover, the dynamic characteristics of this ratio can be clearly observed based on a three-dimensional diagram. Furthermore, the operating performance of the current differential protection was analyzed under different influencing factors. The mathematical analysis presents that the amplitude ratio of the fault current on both sides of the line is larger than nine and that current differential protection will operate reliably in any case. Meanwhile, the theoretical analysis and simulation results show that the current phase angle difference may become an obtuse angle in case of an ungrounded fault, which will cause inaccurate operation of the current differential protection. The results of this study will provide guidance for the engineering application of current differential protection in case the PVPPs are connected to a power grid.https://www.mdpi.com/2071-1050/12/4/1436current differential protectionfault current behaviorperformance problemphotovoltaic power plants |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yingyu Liang Wulin Li Guanjun Xu |
spellingShingle |
Yingyu Liang Wulin Li Guanjun Xu Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants Sustainability current differential protection fault current behavior performance problem photovoltaic power plants |
author_facet |
Yingyu Liang Wulin Li Guanjun Xu |
author_sort |
Yingyu Liang |
title |
Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants |
title_short |
Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants |
title_full |
Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants |
title_fullStr |
Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants |
title_full_unstemmed |
Performance Problem of Current Differential Protection of Lines Emanating from Photovoltaic Power Plants |
title_sort |
performance problem of current differential protection of lines emanating from photovoltaic power plants |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2020-02-01 |
description |
The amplitude and phase angle of the fault current in photovoltaic power plants (PVPPs) are significantly influenced by the control system of the grid-connected inverters, unlike in a conventional synchronous source. Hence, PVPPs may adversely affect the performance of the current differential protection designed for synchronous sources-based power grids. In order to study the performance problem of current differential protection on AC transmission lines, an analytical expression of the fault current in the PVPPs was deduced, and the fault current characteristic was extensively analyzed. Based on this analysis, the ratio of differential current over restraint current was initially derived in this study; this ratio is observed to be affected by the control system parameters, power grid system parameters, fault resistance, and fault types. Moreover, the dynamic characteristics of this ratio can be clearly observed based on a three-dimensional diagram. Furthermore, the operating performance of the current differential protection was analyzed under different influencing factors. The mathematical analysis presents that the amplitude ratio of the fault current on both sides of the line is larger than nine and that current differential protection will operate reliably in any case. Meanwhile, the theoretical analysis and simulation results show that the current phase angle difference may become an obtuse angle in case of an ungrounded fault, which will cause inaccurate operation of the current differential protection. The results of this study will provide guidance for the engineering application of current differential protection in case the PVPPs are connected to a power grid. |
topic |
current differential protection fault current behavior performance problem photovoltaic power plants |
url |
https://www.mdpi.com/2071-1050/12/4/1436 |
work_keys_str_mv |
AT yingyuliang performanceproblemofcurrentdifferentialprotectionoflinesemanatingfromphotovoltaicpowerplants AT wulinli performanceproblemofcurrentdifferentialprotectionoflinesemanatingfromphotovoltaicpowerplants AT guanjunxu performanceproblemofcurrentdifferentialprotectionoflinesemanatingfromphotovoltaicpowerplants |
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