Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System

In distributed operation, each unit is operated by its local controller instead of using a centralized controller, which allows the action to be based on local information rather than global information. Most of the distributed solutions have implemented the consensus method, however, convergence ti...

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Main Authors: Van-Hai Bui, Akhtar Hussain, Hak-Man Kim
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/10/7/903
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spelling doaj-2c6a5033a70d419f921a20ede53be81c2020-11-25T00:57:52ZengMDPI AGEnergies1996-10732017-07-0110790310.3390/en10070903en10070903Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent SystemVan-Hai Bui0Akhtar Hussain1Hak-Man Kim2Department of Electrical Engineering, Incheon National University, 12-1 Songdo-dong, Yeonsu-gu, Incheon 406840, KoreaDepartment of Electrical Engineering, Incheon National University, 12-1 Songdo-dong, Yeonsu-gu, Incheon 406840, KoreaDepartment of Electrical Engineering, Incheon National University, 12-1 Songdo-dong, Yeonsu-gu, Incheon 406840, KoreaIn distributed operation, each unit is operated by its local controller instead of using a centralized controller, which allows the action to be based on local information rather than global information. Most of the distributed solutions have implemented the consensus method, however, convergence time of the consensus method is quite long, while diffusion strategy includes a stochastic gradient term and can reach convergence much faster compared with consensus method. Therefore, in this paper, a diffusion strategy-based distributed operation of microgrids (MGs) is proposed using multiagent system for both normal and emergency operation modes. In normal operation, the MG system is operated by a central controller instead of the distributed controller to minimize the operation cost. If any event (fault) occurs in the system, MG system can be divided into two parts to isolate the faulty region. In this case, the MG system is changed to emergency operation mode. The normal part is rescheduled by the central controller while the isolated part schedules its resources in a distributed manner. The isolated part carries out distributed communication using diffusion between neighboring agents for optimal operation of this part. The proposed method enables peer-to-peer communication among the agents without the necessity of a centralized controller, and simultaneously performs resource optimization. Simulation results show that the system can be operated in an economic way in both normal operation and emergency operation modes.https://www.mdpi.com/1996-1073/10/7/903consensus algorithmdiffusion strategydistributed systemenergy management systemmicrogrid operationoptimal operation
collection DOAJ
language English
format Article
sources DOAJ
author Van-Hai Bui
Akhtar Hussain
Hak-Man Kim
spellingShingle Van-Hai Bui
Akhtar Hussain
Hak-Man Kim
Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
Energies
consensus algorithm
diffusion strategy
distributed system
energy management system
microgrid operation
optimal operation
author_facet Van-Hai Bui
Akhtar Hussain
Hak-Man Kim
author_sort Van-Hai Bui
title Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
title_short Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
title_full Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
title_fullStr Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
title_full_unstemmed Diffusion Strategy-Based Distributed Operation of Microgrids Using Multiagent System
title_sort diffusion strategy-based distributed operation of microgrids using multiagent system
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2017-07-01
description In distributed operation, each unit is operated by its local controller instead of using a centralized controller, which allows the action to be based on local information rather than global information. Most of the distributed solutions have implemented the consensus method, however, convergence time of the consensus method is quite long, while diffusion strategy includes a stochastic gradient term and can reach convergence much faster compared with consensus method. Therefore, in this paper, a diffusion strategy-based distributed operation of microgrids (MGs) is proposed using multiagent system for both normal and emergency operation modes. In normal operation, the MG system is operated by a central controller instead of the distributed controller to minimize the operation cost. If any event (fault) occurs in the system, MG system can be divided into two parts to isolate the faulty region. In this case, the MG system is changed to emergency operation mode. The normal part is rescheduled by the central controller while the isolated part schedules its resources in a distributed manner. The isolated part carries out distributed communication using diffusion between neighboring agents for optimal operation of this part. The proposed method enables peer-to-peer communication among the agents without the necessity of a centralized controller, and simultaneously performs resource optimization. Simulation results show that the system can be operated in an economic way in both normal operation and emergency operation modes.
topic consensus algorithm
diffusion strategy
distributed system
energy management system
microgrid operation
optimal operation
url https://www.mdpi.com/1996-1073/10/7/903
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AT hakmankim diffusionstrategybaseddistributedoperationofmicrogridsusingmultiagentsystem
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