Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop

In this paper, a distributed generation including diesel generators, wind turbines, and microturbines are introduced, and their mathematical model is described using the Taylor expansion method. With the goal of computational complexity eliminating, the reduced order model (ROM) of microgrid compone...

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Main Authors: H. Radmanesh, M. Saeidi
Format: Article
Language:English
Published: University of Mohaghegh Ardabili 2019-10-01
Series:Journal of Operation and Automation in Power Engineering
Subjects:
Online Access:http://joape.uma.ac.ir/article_781_3045530aa15b1db4a79380194c1a0659.pdf
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author H. Radmanesh
M. Saeidi
author_facet H. Radmanesh
M. Saeidi
author_sort H. Radmanesh
collection DOAJ
description In this paper, a distributed generation including diesel generators, wind turbines, and microturbines are introduced, and their mathematical model is described using the Taylor expansion method. With the goal of computational complexity eliminating, the reduced order model (ROM) of microgrid components is considered. The results of the ‌‌studies indicate that the microgrid frequency is unstable. The main purpose of this paper is stabilizing the frequency of the microgrid by design modified linear controller. It is shown that the using proposed linear controller increases the dynamic response of the diesel generator and therefore can be constituted stable microgrid. The results show that the diesel generator can control the frequency of the microgrid in unwanted islanding and load change conditions. To verify the validity and feasibility of the proposed controller, several simulations results have been presented on MATLAB/Simulink software. The simulation results show the appropriate performance of the proposed controller for example in islanding mode, frequency restoration time is less than 1 (s) by using the proposed controller, as a result, the microgrid can be exploited in island mode.
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spelling doaj.art-c6b57b31051f4170a9295775e8cdedd82022-12-21T19:09:44ZengUniversity of Mohaghegh ArdabiliJournal of Operation and Automation in Power Engineering2322-45762019-10-017221622610.22098/joape.2019.5435.1408781Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control LoopH. Radmanesh0M. Saeidi1Electrical Engineering, Department , Shahid Sattari Aeronautical University of Science and Technology, Tehran, Iran.Electrical Engineering Department,Iran uinversity of scincse and Thechnology, Tehran, Iran.In this paper, a distributed generation including diesel generators, wind turbines, and microturbines are introduced, and their mathematical model is described using the Taylor expansion method. With the goal of computational complexity eliminating, the reduced order model (ROM) of microgrid components is considered. The results of the ‌‌studies indicate that the microgrid frequency is unstable. The main purpose of this paper is stabilizing the frequency of the microgrid by design modified linear controller. It is shown that the using proposed linear controller increases the dynamic response of the diesel generator and therefore can be constituted stable microgrid. The results show that the diesel generator can control the frequency of the microgrid in unwanted islanding and load change conditions. To verify the validity and feasibility of the proposed controller, several simulations results have been presented on MATLAB/Simulink software. The simulation results show the appropriate performance of the proposed controller for example in islanding mode, frequency restoration time is less than 1 (s) by using the proposed controller, as a result, the microgrid can be exploited in island mode.http://joape.uma.ac.ir/article_781_3045530aa15b1db4a79380194c1a0659.pdfmicrogridcontrollerstabilityislandingdistribute generation
spellingShingle H. Radmanesh
M. Saeidi
Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
Journal of Operation and Automation in Power Engineering
microgrid
controller
stability
islanding
distribute generation
title Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
title_full Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
title_fullStr Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
title_full_unstemmed Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
title_short Stabilizing Microgrid Frequency by Linear Controller Design to Increase dynamic response of Diesel Generator frequency Control Loop
title_sort stabilizing microgrid frequency by linear controller design to increase dynamic response of diesel generator frequency control loop
topic microgrid
controller
stability
islanding
distribute generation
url http://joape.uma.ac.ir/article_781_3045530aa15b1db4a79380194c1a0659.pdf
work_keys_str_mv AT hradmanesh stabilizingmicrogridfrequencybylinearcontrollerdesigntoincreasedynamicresponseofdieselgeneratorfrequencycontrolloop
AT msaeidi stabilizingmicrogridfrequencybylinearcontrollerdesigntoincreasedynamicresponseofdieselgeneratorfrequencycontrolloop