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ITS » Undergraduate Theses » S1 Teknik Elektro
Posted by taujack@its.ac.id at 29/11/2011 14:05:07  •  741 Views


OPTIMAL TUNING PID SUPERCONDUCTING MAGNETIC ENERGY STORAGE SMES MENGGUNAKAN IMPERIALIST COMPETITIVE ALGORITHM ICA UNTUK MEREDAM OSILASI DAYA PADA SISTEM KELISTRIKAN JAWA BALI 500 KV

OPTIMAL TUNING OF PID SUPERCONDUCTING MAGNETIC ENERGY STORAGE UNITS SMES USING IMPERIALIST COMPETITIVE ALGORITHM ICA FOR DAMPING OF POWER SYSTEM OSCILLATION IN JAVA BALI 500 KV SYSTEM

Author :
FASSAMSI, MOCHAMAD AVID  ( 2207100168 )




ABSTRAK

Energi listrik yang disuplai ke konsumen harus mempunyai stabilitas dan keandalan yang tinggi. Jika terjadi perubahan daya tiba-tiba maka mengakibatkan gangguan stabilitas sistem. Gangguan tersebut akan menyebabkan osilasi pada sistem yang dapat mengakibatkan generator lepas sinkron. Untuk mengatasi hal ini generator memerlukan kontroler tambahan yang dipasang baik di bagian exciter atau di bus terminalnya. Pada Tugas Akhir ini diusulkan sebuah kontroler yang berguna untuk mengatur fluktuasi daya aktif di bus generator yaitu dengan menggunakan Superconducting magnetic energy storage SMES.SMES merupakan salah satu peralatan yang dapat menyimpan energi dalam bentuk medan magnet pada kumparan superkonduktor.Sebuah kontroler PID juga dipasang di SMES untuk mengatur besarnya daya input atau output dari SMES berdasarkan perubahan kecepatan generator. Untuk mendapatkan parameter PID SMESyang optimal pada sistem multimesin Jawa Bali 500 kV digunakan metode Imperialist Competitive Algorithm ICA. Hasil simulasi menunjukkan bahwa penerapan ICA terhadap PID SMES pada sistem multimesin Jawa Bali 500kV dapat mempercepat settling time respon perubahan frekuensi dan respon perubahan sudut rotor seluruh pembangkit Jawa Bali 500 kV.


ABSTRACT

Electrical energy supplied to consumers must have a high stability and reliability. If there is a sudden change of power will result in system stability problems. The disturbance will be followed by oscillations in the system and can cause generator loss of synchronization. To overcome this the generator requires an additional controller that is placed either in the exciter or the bus terminal. In this final project proposed a controller that allows adjusting the active power fluctuations at the generator bus by using superconducting magnetic energy storage SMES. SMES is device that can store energy in the form of a magnetic field on the superconducting coil. A proportional-integral-derivative PID controllers employed to modulate the power input or output of the SMES according to generator speed deviation. In this final project a research investigated tuning method of PID SMES in Java Bali 500 kV multimachine systems using Imperialist Competitive Algorithm ICA. Simulation results show that the implementation of ICA to PID SMES in Java Bali 500 kV multimachine systems can accelerate settling time response of frequency changing and rotor angle changing for all generators in Java Bali 500 kV multimachine systems.



Keywordsmultimesin; SMES; kontroler PID; ICA
 
Subject:  Kontroler PID
Contributor
  1. Prof. Dr. Ir. Imam Robandi, MT.
  2. Heri Suryoatmojo, ST, MT, Ph.D.
Date Create: 29/11/2011
Type: Text
Format: pdf
Language: Indonesian
Identifier: ITS-Undergraduate-3100011043118
Collection ID: 3100011043118
Call Number: RSE 629.831 2 Fas o


Source
Undergraduate Thesis, Electrical Engineering ,RSE 629.831 2 Fas o, 2011

Coverage
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Rights
Copyright @2011 by ITS Library. This publication is protected by copyright and per obtained from the ITS Library prior to any prohibited reproduction, storage in a re transmission in any form or by any means, electronic, mechanical, photocopying, reco For information regarding permission(s), write to ITS Library




[ Download - Open Access ]

  1.  ITS-Undergraduate-16349-2207100168-Abstract_id.pdf - 247 KB
  2.  ITS-Undergraduate-16349-2207100168-Abstract_en.pdf - 254 KB
  3.  ITS-Undergraduate-16349-2207100168-Conclusion.pdf - 254 KB
  4.  ITS-Undergraduate-16349-2207100168-Paper.pdf - 878 KB




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