Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously

This paper describes the impact of the mode selection in Distributed Generation (DG) has in order to reduce the total power losses in the distribution system when coordination between the DG and capacitor is done simultaneously There are two modes available for the DG to operate which are the Power-...

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Main Authors: Muhtazaruddin, M. N., Bani, N. A., Muhammad Sukki, F., Jamian, J. J., Abu Bakar, S. H.
Format: Article
Published: UK Simulation Society 2017
Subjects:
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author Muhtazaruddin, M. N.
Bani, N. A.
Muhammad Sukki, F.
Jamian, J. J.
Abu Bakar, S. H.
author_facet Muhtazaruddin, M. N.
Bani, N. A.
Muhammad Sukki, F.
Jamian, J. J.
Abu Bakar, S. H.
author_sort Muhtazaruddin, M. N.
collection ePrints
description This paper describes the impact of the mode selection in Distributed Generation (DG) has in order to reduce the total power losses in the distribution system when coordination between the DG and capacitor is done simultaneously There are two modes available for the DG to operate which are the Power-Reactive Power (PQ) and Power-Voltage (PV) modes. The coordination between the DG and capacitor is a crucial task that needs to be done during the initial planning stage. Any error in identifying the power output and the location of the DG as well as the size and the location of the capacitor can increase the losses in distribution system. In this paper, some modifications were made on Artificial Bee Colony (ABC) by combining several steps on Artificial Immune System (AIS) will be used. Several cases studies are carried out to see the impact of mode selection on 33-bus distribution system by using MATLAB programming.
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institution Universiti Teknologi Malaysia - ePrints
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spelling utm.eprints-805702019-06-27T06:08:24Z http://eprints.utm.my/80570/ Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously Muhtazaruddin, M. N. Bani, N. A. Muhammad Sukki, F. Jamian, J. J. Abu Bakar, S. H. T Technology (General) This paper describes the impact of the mode selection in Distributed Generation (DG) has in order to reduce the total power losses in the distribution system when coordination between the DG and capacitor is done simultaneously There are two modes available for the DG to operate which are the Power-Reactive Power (PQ) and Power-Voltage (PV) modes. The coordination between the DG and capacitor is a crucial task that needs to be done during the initial planning stage. Any error in identifying the power output and the location of the DG as well as the size and the location of the capacitor can increase the losses in distribution system. In this paper, some modifications were made on Artificial Bee Colony (ABC) by combining several steps on Artificial Immune System (AIS) will be used. Several cases studies are carried out to see the impact of mode selection on 33-bus distribution system by using MATLAB programming. UK Simulation Society 2017 Article PeerReviewed Muhtazaruddin, M. N. and Bani, N. A. and Muhammad Sukki, F. and Jamian, J. J. and Abu Bakar, S. H. (2017) Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously. International Journal of Simulation: Systems, Science and Technology, 17 (41). 26.1-26.5. ISSN 1473-8031
spellingShingle T Technology (General)
Muhtazaruddin, M. N.
Bani, N. A.
Muhammad Sukki, F.
Jamian, J. J.
Abu Bakar, S. H.
Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title_full Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title_fullStr Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title_full_unstemmed Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title_short Impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
title_sort impact of dispersed generation modes in optimal coordination between distributed generation and capacitor simultaneously
topic T Technology (General)
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AT banina impactofdispersedgenerationmodesinoptimalcoordinationbetweendistributedgenerationandcapacitorsimultaneously
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AT jamianjj impactofdispersedgenerationmodesinoptimalcoordinationbetweendistributedgenerationandcapacitorsimultaneously
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