Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs
To deal with extreme overvoltage scenarios with small probabilities in regional power grids, the traditional reactive power planning model requires a huge VAR compensator investment. Obviously, such a decision that makes a large investment to cope with a small probability event is not economic. Ther...
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doaj-076f9131cccb412cb1f9e612b45a9b022020-11-24T22:22:51ZengMDPI AGEnergies1996-10732018-06-01116160610.3390/en11061606en11061606Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGsYangwu Shen0Feifan Shen1Yaling Chen2Liqing Liang3Bin Zhang4Deping Ke5Sate Grid Hunan Electric Power Corporation Research Institute, Changsha 410007, ChinaDepartment of Electrical Engineering, Technical University of Denmark, kgs. Lyngby, 2008 Copenhagen, DenmarkSchool of Humanities and Management, Hunan University of Chinese Medicine, Changsha 410208, ChinaSate Grid Hunan Electric Power Corporation Research Institute, Changsha 410007, ChinaSate Grid Hunan Electric Power Corporation Research Institute, Changsha 410007, ChinaDepartment of Electrical Engineering, Wuhan University, Wuhan 430000, ChinaTo deal with extreme overvoltage scenarios with small probabilities in regional power grids, the traditional reactive power planning model requires a huge VAR compensator investment. Obviously, such a decision that makes a large investment to cope with a small probability event is not economic. Therefore, based on the scenario analysis of power outputs of distributed generations and load consumption, a novel reactive power planning model considering the active and reactive power adjustments of distributed generations is proposed to derive the optimal allocation of VAR compensators and ensure bus voltages within an acceptable range under extreme overvoltage scenarios. The objective of the proposed reactive power planning model is to minimize the VAR compensator investment cost and active power adjustment cost of distributed generations. Moreover, since the proposed reactive power planning model is formulated as a mixed-integer nonlinear programming problem, a primal-dual interior point method-based particle swarm optimization algorithm is developed to effectively solve the proposed model. Simulation results were conducted with the modified IEEE 30-bus system to verify the effectiveness of the proposed reactive power planning model.http://www.mdpi.com/1996-1073/11/6/1606reactive power planningdistributed generationactive power adjustmentmixed integer nonlinear programming |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yangwu Shen Feifan Shen Yaling Chen Liqing Liang Bin Zhang Deping Ke |
spellingShingle |
Yangwu Shen Feifan Shen Yaling Chen Liqing Liang Bin Zhang Deping Ke Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs Energies reactive power planning distributed generation active power adjustment mixed integer nonlinear programming |
author_facet |
Yangwu Shen Feifan Shen Yaling Chen Liqing Liang Bin Zhang Deping Ke |
author_sort |
Yangwu Shen |
title |
Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs |
title_short |
Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs |
title_full |
Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs |
title_fullStr |
Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs |
title_full_unstemmed |
Reactive Power Planning for Regional Power Grids Based on Active and Reactive Power Adjustments of DGs |
title_sort |
reactive power planning for regional power grids based on active and reactive power adjustments of dgs |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2018-06-01 |
description |
To deal with extreme overvoltage scenarios with small probabilities in regional power grids, the traditional reactive power planning model requires a huge VAR compensator investment. Obviously, such a decision that makes a large investment to cope with a small probability event is not economic. Therefore, based on the scenario analysis of power outputs of distributed generations and load consumption, a novel reactive power planning model considering the active and reactive power adjustments of distributed generations is proposed to derive the optimal allocation of VAR compensators and ensure bus voltages within an acceptable range under extreme overvoltage scenarios. The objective of the proposed reactive power planning model is to minimize the VAR compensator investment cost and active power adjustment cost of distributed generations. Moreover, since the proposed reactive power planning model is formulated as a mixed-integer nonlinear programming problem, a primal-dual interior point method-based particle swarm optimization algorithm is developed to effectively solve the proposed model. Simulation results were conducted with the modified IEEE 30-bus system to verify the effectiveness of the proposed reactive power planning model. |
topic |
reactive power planning distributed generation active power adjustment mixed integer nonlinear programming |
url |
http://www.mdpi.com/1996-1073/11/6/1606 |
work_keys_str_mv |
AT yangwushen reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs AT feifanshen reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs AT yalingchen reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs AT liqingliang reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs AT binzhang reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs AT depingke reactivepowerplanningforregionalpowergridsbasedonactiveandreactivepoweradjustmentsofdgs |
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1725766943068127232 |