Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements

In this study, we propose a voltage estimation method for the radial distribution network with distributed generators (DGs) using high-precision measurements (HPMs). The proposed method uses the section loads center for voltage estimation because individual loads are not measured in the distribution...

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Main Authors: Chan-Hyeok Oh, Seok-Il Go, Joon-Ho Choi, Seon-Ju Ahn, Sang-Yun Yun
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/9/2385
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spelling doaj-d92780ccd221435aa91ed0d118d9c7152020-11-25T02:41:49ZengMDPI AGEnergies1996-10732020-05-01132385238510.3390/en13092385Voltage Estimation Method for Power Distribution Networks Using High-Precision MeasurementsChan-Hyeok Oh0Seok-Il Go1Joon-Ho Choi2Seon-Ju Ahn3Sang-Yun Yun4Department of Electrical Engineering in Chonnam National University, Gwangju 61186, KoreaDepartment of Electrical Engineering in Chonnam National University, Gwangju 61186, KoreaDepartment of Electrical Engineering in Chonnam National University, Gwangju 61186, KoreaDepartment of Electrical Engineering in Chonnam National University, Gwangju 61186, KoreaDepartment of Electrical Engineering in Chonnam National University, Gwangju 61186, KoreaIn this study, we propose a voltage estimation method for the radial distribution network with distributed generators (DGs) using high-precision measurements (HPMs). The proposed method uses the section loads center for voltage estimation because individual loads are not measured in the distribution system. The bus voltage was estimated through correction of the section load center by using an HPM at the end of the main feeder. The correction parameter of the section load center was calculated by comparing the initial voltage estimates and the measurements of the HPMs. After that, the voltage of the main feeder was re-estimated. Finally, the bus voltage in the lateral feeder was estimated based on the voltage estimates in the main feeder and the current measurements in the lateral feeder. The accuracy of the proposed algorithm was verified through case studies by using test systems implemented in MATLAB, Simulink, and Python environments. In order to verify the utilization of the proposed method to the practical system, a test with injection of approximately 5% of normally distributed random noise was performed. Through the results of the case studies, when an HPM is installed at the end of the main feeder, it demonstrated that the voltage estimation accuracy can be greatly improved by the proposed method. Compared with the existing methods, the proposed method was less affected by PV and showed robustness to measurement noise.https://www.mdpi.com/1996-1073/13/9/2385voltage estimationsection load centerhigh-precision measurementradial distribution network
collection DOAJ
language English
format Article
sources DOAJ
author Chan-Hyeok Oh
Seok-Il Go
Joon-Ho Choi
Seon-Ju Ahn
Sang-Yun Yun
spellingShingle Chan-Hyeok Oh
Seok-Il Go
Joon-Ho Choi
Seon-Ju Ahn
Sang-Yun Yun
Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
Energies
voltage estimation
section load center
high-precision measurement
radial distribution network
author_facet Chan-Hyeok Oh
Seok-Il Go
Joon-Ho Choi
Seon-Ju Ahn
Sang-Yun Yun
author_sort Chan-Hyeok Oh
title Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
title_short Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
title_full Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
title_fullStr Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
title_full_unstemmed Voltage Estimation Method for Power Distribution Networks Using High-Precision Measurements
title_sort voltage estimation method for power distribution networks using high-precision measurements
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-05-01
description In this study, we propose a voltage estimation method for the radial distribution network with distributed generators (DGs) using high-precision measurements (HPMs). The proposed method uses the section loads center for voltage estimation because individual loads are not measured in the distribution system. The bus voltage was estimated through correction of the section load center by using an HPM at the end of the main feeder. The correction parameter of the section load center was calculated by comparing the initial voltage estimates and the measurements of the HPMs. After that, the voltage of the main feeder was re-estimated. Finally, the bus voltage in the lateral feeder was estimated based on the voltage estimates in the main feeder and the current measurements in the lateral feeder. The accuracy of the proposed algorithm was verified through case studies by using test systems implemented in MATLAB, Simulink, and Python environments. In order to verify the utilization of the proposed method to the practical system, a test with injection of approximately 5% of normally distributed random noise was performed. Through the results of the case studies, when an HPM is installed at the end of the main feeder, it demonstrated that the voltage estimation accuracy can be greatly improved by the proposed method. Compared with the existing methods, the proposed method was less affected by PV and showed robustness to measurement noise.
topic voltage estimation
section load center
high-precision measurement
radial distribution network
url https://www.mdpi.com/1996-1073/13/9/2385
work_keys_str_mv AT chanhyeokoh voltageestimationmethodforpowerdistributionnetworksusinghighprecisionmeasurements
AT seokilgo voltageestimationmethodforpowerdistributionnetworksusinghighprecisionmeasurements
AT joonhochoi voltageestimationmethodforpowerdistributionnetworksusinghighprecisionmeasurements
AT seonjuahn voltageestimationmethodforpowerdistributionnetworksusinghighprecisionmeasurements
AT sangyunyun voltageestimationmethodforpowerdistributionnetworksusinghighprecisionmeasurements
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