Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability

Due to environmental and energy policies in recent years, some countries will install many PV generations into power systems in the future. Under this condition, it is worrisome that the disconnection of the PV occurs because of a voltage drop triggered via a system fault, which impacts the stabilit...

Full description

Bibliographic Details
Main Authors: Wang Jinpeng, Zhang Bo, Yao Qinxue, Jeremy-Gillbanks, Zhao Xin
Format: Article
Language:English
Published: IEEE 2023-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10100710/
_version_ 1827964784303144960
author Wang Jinpeng
Zhang Bo
Yao Qinxue
Jeremy-Gillbanks
Zhao Xin
author_facet Wang Jinpeng
Zhang Bo
Yao Qinxue
Jeremy-Gillbanks
Zhao Xin
author_sort Wang Jinpeng
collection DOAJ
description Due to environmental and energy policies in recent years, some countries will install many PV generations into power systems in the future. Under this condition, it is worrisome that the disconnection of the PV occurs because of a voltage drop triggered via a system fault, which impacts the stability of the PV(photovoltaic).A technique of FRT (Fault Ride Through) is an expected solution for PVs. However, just the FRT requirements for PVs do not inevitably increase the stability of the power system. Solving the problem of the instability of the inverter control in a grid-connected PV needs reasonable consideration. This paper proposed an automatically independent controlling algorithm of the PV inverter considering dynamic load features and Active LVRT (low voltage ride through) capability to increase the robustness and performance of the grid-connected PV system, and both simulation and experimental results showed that the condition of a range from an IM rate = 20[%] to an IM rate=40[%] could best meet the requirements for the PV outputting recovery and the average tracking error of the input current reduced by nearly 10%. Also, the average output current tracking error was reduced by about 4%. This shows that the tracking performance has significantly improved.
first_indexed 2024-04-09T17:21:56Z
format Article
id doaj.art-bf536e42286d43eb9886acb7085d38c7
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-04-09T17:21:56Z
publishDate 2023-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-bf536e42286d43eb9886acb7085d38c72023-04-18T23:00:20ZengIEEEIEEE Access2169-35362023-01-0111366183662910.1109/ACCESS.2023.326665710100710Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT CapabilityWang Jinpeng0https://orcid.org/0000-0002-0858-8895Zhang Bo1Yao Qinxue2https://orcid.org/0000-0003-0915-6389 Jeremy-Gillbanks3Zhao Xin4School of Information Science and Engineering, Dalian Polytechnic University, Dalian, ChinaSchool of Information Science and Engineering, Dalian Polytechnic University, Dalian, ChinaSchool of Information Science and Engineering, Dalian Polytechnic University, Dalian, ChinaSchool of Electronic, Electrical and Computer Engineering, The University of Western Australia, Perth, WA, AustraliaSchool of Information Science and Engineering, Dalian Polytechnic University, Dalian, ChinaDue to environmental and energy policies in recent years, some countries will install many PV generations into power systems in the future. Under this condition, it is worrisome that the disconnection of the PV occurs because of a voltage drop triggered via a system fault, which impacts the stability of the PV(photovoltaic).A technique of FRT (Fault Ride Through) is an expected solution for PVs. However, just the FRT requirements for PVs do not inevitably increase the stability of the power system. Solving the problem of the instability of the inverter control in a grid-connected PV needs reasonable consideration. This paper proposed an automatically independent controlling algorithm of the PV inverter considering dynamic load features and Active LVRT (low voltage ride through) capability to increase the robustness and performance of the grid-connected PV system, and both simulation and experimental results showed that the condition of a range from an IM rate = 20[%] to an IM rate=40[%] could best meet the requirements for the PV outputting recovery and the average tracking error of the input current reduced by nearly 10%. Also, the average output current tracking error was reduced by about 4%. This shows that the tracking performance has significantly improved.https://ieeexplore.ieee.org/document/10100710/PV inverterfault ride throughgrid-connectedPV system
spellingShingle Wang Jinpeng
Zhang Bo
Yao Qinxue
Jeremy-Gillbanks
Zhao Xin
Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
IEEE Access
PV inverter
fault ride through
grid-connected
PV system
title Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
title_full Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
title_fullStr Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
title_full_unstemmed Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
title_short Research on the Automatically Independent Controlling Algorithm of the Grid-Connected PV Inverter Jointly Considering Dynamic Load Features and Active LVRT Capability
title_sort research on the automatically independent controlling algorithm of the grid connected pv inverter jointly considering dynamic load features and active lvrt capability
topic PV inverter
fault ride through
grid-connected
PV system
url https://ieeexplore.ieee.org/document/10100710/
work_keys_str_mv AT wangjinpeng researchontheautomaticallyindependentcontrollingalgorithmofthegridconnectedpvinverterjointlyconsideringdynamicloadfeaturesandactivelvrtcapability
AT zhangbo researchontheautomaticallyindependentcontrollingalgorithmofthegridconnectedpvinverterjointlyconsideringdynamicloadfeaturesandactivelvrtcapability
AT yaoqinxue researchontheautomaticallyindependentcontrollingalgorithmofthegridconnectedpvinverterjointlyconsideringdynamicloadfeaturesandactivelvrtcapability
AT jeremygillbanks researchontheautomaticallyindependentcontrollingalgorithmofthegridconnectedpvinverterjointlyconsideringdynamicloadfeaturesandactivelvrtcapability
AT zhaoxin researchontheautomaticallyindependentcontrollingalgorithmofthegridconnectedpvinverterjointlyconsideringdynamicloadfeaturesandactivelvrtcapability