Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA

The power of the generating system is strongly influenced by frequency changes. The wind generating system is strongly influenced by the magnitude and speed of the agin as input power. The wind-diesel combined generating system is required to obtain optimum power quality. The hybrid swarm system is...

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Main Authors: Muhammad Arrohman, Risky Fajardika, Muhlasin Muhlasin, Machrus Ali
Format: Article
Language:English
Published: University of Brawijaya 2018-05-01
Series:Rekayasa Mesin
Subjects:
ACO
MFA
PID
Online Access:http://rekayasamesin.ub.ac.id/index.php/rm/article/view/438
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spelling doaj-4253da9ec0eb402dab0b66b65f3e80b02020-11-24T20:57:42ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412018-05-0191656810.21776/ub.jrm.2018.009.01.10318Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFAMuhammad Arrohman0Risky Fajardika1Muhlasin Muhlasin2Machrus Ali3Universitas Darul ’UlumUniversitas Darul ’UlumUniversitas Darul ’UlumUniversitas Darul ’UlumThe power of the generating system is strongly influenced by frequency changes. The wind generating system is strongly influenced by the magnitude and speed of the agin as input power. The wind-diesel combined generating system is required to obtain optimum power quality. The hybrid swarm system is a controlled network of some renewable energy generation such as: wind turbine, solar cell, micro hydro and so on. Not optimal setting gain and small constant time on Load Frequency Control (LFC), causing its ability to be weak (weak line). In practice, wind-diesel systems are controlled with PID controller. Setting the gain value of the PID is still in the conventional method, making it difficult to get the optimal value. In this research applied control design by using Intelligent Method in finding the optimum value of Proportional Intergral Derivative (PID) to adjust load frequency with Matlab / Simulink program. This research uses Ant Colony Optimization (ACO) and Modification Firefly Algorithm (MFA). For comparison methods are used without control method, conventional PID method and matlab auto tuning method. Wind-diesel modeling uses the transfer function of diagram of wind turbine and diesel. The study compared several uncontrolled methods and conventional PID, ACO, with FA and MFA. The results show that the smallest undershoot is PID-MFA Controller of -1.529.10-4 and the fastest settling time on the PID-ACO controller 11.5 secondshttp://rekayasamesin.ub.ac.id/index.php/rm/article/view/438ACOFrequencyMFAPIDWind-Diesel
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Arrohman
Risky Fajardika
Muhlasin Muhlasin
Machrus Ali
spellingShingle Muhammad Arrohman
Risky Fajardika
Muhlasin Muhlasin
Machrus Ali
Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
Rekayasa Mesin
ACO
Frequency
MFA
PID
Wind-Diesel
author_facet Muhammad Arrohman
Risky Fajardika
Muhlasin Muhlasin
Machrus Ali
author_sort Muhammad Arrohman
title Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
title_short Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
title_full Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
title_fullStr Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
title_full_unstemmed Optimasi Frekuensi Kontrol pada Sistem Hybrid Wind-Diesel Menggunakan PID Kontroler Berbasis ACO dan MFA
title_sort optimasi frekuensi kontrol pada sistem hybrid wind-diesel menggunakan pid kontroler berbasis aco dan mfa
publisher University of Brawijaya
series Rekayasa Mesin
issn 2338-1663
2477-6041
publishDate 2018-05-01
description The power of the generating system is strongly influenced by frequency changes. The wind generating system is strongly influenced by the magnitude and speed of the agin as input power. The wind-diesel combined generating system is required to obtain optimum power quality. The hybrid swarm system is a controlled network of some renewable energy generation such as: wind turbine, solar cell, micro hydro and so on. Not optimal setting gain and small constant time on Load Frequency Control (LFC), causing its ability to be weak (weak line). In practice, wind-diesel systems are controlled with PID controller. Setting the gain value of the PID is still in the conventional method, making it difficult to get the optimal value. In this research applied control design by using Intelligent Method in finding the optimum value of Proportional Intergral Derivative (PID) to adjust load frequency with Matlab / Simulink program. This research uses Ant Colony Optimization (ACO) and Modification Firefly Algorithm (MFA). For comparison methods are used without control method, conventional PID method and matlab auto tuning method. Wind-diesel modeling uses the transfer function of diagram of wind turbine and diesel. The study compared several uncontrolled methods and conventional PID, ACO, with FA and MFA. The results show that the smallest undershoot is PID-MFA Controller of -1.529.10-4 and the fastest settling time on the PID-ACO controller 11.5 seconds
topic ACO
Frequency
MFA
PID
Wind-Diesel
url http://rekayasamesin.ub.ac.id/index.php/rm/article/view/438
work_keys_str_mv AT muhammadarrohman optimasifrekuensikontrolpadasistemhybridwinddieselmenggunakanpidkontrolerberbasisacodanmfa
AT riskyfajardika optimasifrekuensikontrolpadasistemhybridwinddieselmenggunakanpidkontrolerberbasisacodanmfa
AT muhlasinmuhlasin optimasifrekuensikontrolpadasistemhybridwinddieselmenggunakanpidkontrolerberbasisacodanmfa
AT machrusali optimasifrekuensikontrolpadasistemhybridwinddieselmenggunakanpidkontrolerberbasisacodanmfa
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