Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function

To solve the issue of insufficient power supply reliability caused by the single power supply form in the low-voltage distribution area (LVDA) of power transformer, a multi-energy interactive power supply system (MIPSS) integrating the grid, new energy and energy storage is constructed by referring...

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Main Authors: Hongchuan Li, Bin Li, Zhongge Luo, Hang Li, Yu Zhao, Ting Wang, Yanfei Sun
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9987489/
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author Hongchuan Li
Bin Li
Zhongge Luo
Hang Li
Yu Zhao
Ting Wang
Yanfei Sun
author_facet Hongchuan Li
Bin Li
Zhongge Luo
Hang Li
Yu Zhao
Ting Wang
Yanfei Sun
author_sort Hongchuan Li
collection DOAJ
description To solve the issue of insufficient power supply reliability caused by the single power supply form in the low-voltage distribution area (LVDA) of power transformer, a multi-energy interactive power supply system (MIPSS) integrating the grid, new energy and energy storage is constructed by referring to the operating characteristics of unified power quality conditioner (UPQC). In addition to the power quality improvement function, the MIPSS can also realize the orderly control of different powers, and enhance the reliability, diversity and stability for electricity supply in the LVDA. First, based on the analyzed power flow operating principles, the operating modes of MIPSS are divided into three categories consisting of six forms, which can meet the high-reliability power supply demand for loads in various scenarios. Then, a multi-mode cooperative control strategy (MCCS) is proposed to realize the multi-mode operation and seamless transition, as well as the diversified energy management and interaction between the grid, new energy, energy storage and load are realized through the designed mode selection and reference generation (MSRG). Finally, the simulation results verify the operating performance of the constructed MIPSS and the effectiveness of the proposed MCCS.
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spelling doaj.art-adc5d1515d684cc099c93613f4faf2a62022-12-22T00:00:54ZengIEEEIEEE Access2169-35362022-01-011013061913063110.1109/ACCESS.2022.32294249987489Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement FunctionHongchuan Li0https://orcid.org/0000-0002-0488-542XBin Li1Zhongge Luo2Hang Li3Yu Zhao4Ting Wang5Yanfei Sun6State Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaState Grid Beijing Urban District Power Supply Company, Beijing, ChinaTo solve the issue of insufficient power supply reliability caused by the single power supply form in the low-voltage distribution area (LVDA) of power transformer, a multi-energy interactive power supply system (MIPSS) integrating the grid, new energy and energy storage is constructed by referring to the operating characteristics of unified power quality conditioner (UPQC). In addition to the power quality improvement function, the MIPSS can also realize the orderly control of different powers, and enhance the reliability, diversity and stability for electricity supply in the LVDA. First, based on the analyzed power flow operating principles, the operating modes of MIPSS are divided into three categories consisting of six forms, which can meet the high-reliability power supply demand for loads in various scenarios. Then, a multi-mode cooperative control strategy (MCCS) is proposed to realize the multi-mode operation and seamless transition, as well as the diversified energy management and interaction between the grid, new energy, energy storage and load are realized through the designed mode selection and reference generation (MSRG). Finally, the simulation results verify the operating performance of the constructed MIPSS and the effectiveness of the proposed MCCS.https://ieeexplore.ieee.org/document/9987489/Power supplymulti-energy interactionmulti-mode operationpower quality
spellingShingle Hongchuan Li
Bin Li
Zhongge Luo
Hang Li
Yu Zhao
Ting Wang
Yanfei Sun
Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
IEEE Access
Power supply
multi-energy interaction
multi-mode operation
power quality
title Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
title_full Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
title_fullStr Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
title_full_unstemmed Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
title_short Power Supply Reliability Enhancement for Low-Voltage Distribution Area With Power Quality Improvement Function
title_sort power supply reliability enhancement for low voltage distribution area with power quality improvement function
topic Power supply
multi-energy interaction
multi-mode operation
power quality
url https://ieeexplore.ieee.org/document/9987489/
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AT hangli powersupplyreliabilityenhancementforlowvoltagedistributionareawithpowerqualityimprovementfunction
AT yuzhao powersupplyreliabilityenhancementforlowvoltagedistributionareawithpowerqualityimprovementfunction
AT tingwang powersupplyreliabilityenhancementforlowvoltagedistributionareawithpowerqualityimprovementfunction
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