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ITS » Paper and Presentation » S1 Teknik Elektro
Posted by anisw@its.ac.id at 13/05/2016 10:24:34  •  682 Views


DESIGN AND IMPLEMENTATION OF THREE PHASE MOTOR CENTRIFUGAL MACHINES SPEED CONTROL USING FUZZY LOGIC CONTROLLER

PERANCANGAN DAN IMPLEMENTASI PENGATURAN KECEPATAN MOTOR TIGA FASA PADA MESIN SENTRIFUGAL MENGGUNAKAN KONTROLER LOGIKA FUZZY

Author :
KURNIAWAN, MARENDRA ( 2212105039 )




ABSTRAK

Motor induksi 3 fasa banyak digunakan di industri salah satunya pada industri pabrik gula. Di industri pabrik gula motor industri 3 fasa banyak digunakan pada mesin sentrifugal. Mesin ini digunakan pada proses pemisahan cairan massacuite dan strup hingga didapat kristal gula. Pada proses tersebut terjadi perubahan beban oleh karena itu pada siklus kecepatannya mengalami proses Charging Spinning dan Discharging. Pengaturan kecepatan motor induksi masih dilakukan secara manual yaitu dengan merubah posisi puli atau ukuran poros dari mesin sentrifugal. Pengaturan dengan metode ini mengakibatkan kecepatan motor akan sulit dikendalikan sesuai dengan yang diharapkan. Pengaturan kecepatan yang tidak tepat juga dapat mengakibatkan hasil produksi gula yang kurang maksimal. Oleh karena itu dibutuhkan metode kontrol untuk mempertahankan kecepatan motor bila terjadi pertambahan beban saat mengalami proses charging spinning dan discharging. Kontroler yang digunakan adalah Kontroler Logika Fuzzy KLF. Pada simulasi menggunakan KLF dan kontroler PID serta implementasi menggunakan kontroler PID memiliki rara-rata error saat proses charging spinning dan discharging sebesar 01 dan 114. Sehingga Tugas Akhir ini dapat membantu meningkatkan efisiensi mesin sentrifugal pada pabrik gula.


ABSTRACT

3-phase induction motors are widely used in the industry one on industrial sugar factory. Industrial sugar factory in industrial motor 3 phase used in centrifugal machine. This engine was used in the process of separation of the liquid massacuite and sugar crystals up to gained strup. In the process of changing the burden is therefore on its velocity undergoes a process of Charging cycles the Spinning and Discharging. Induction motor speed settings are still done manually by changing the position of the shaft or the size of the puli engine centrifugal. This method resulted in an arrangement with the speed of the motor will be difficult to control as expected. Inappropriate speed settings can also lead to less sugar production results. It is therefore necessary to maintain the control method of motor speed when load is added while experiencing the process of charging and discharging spinning. The controller that is used is the Fuzzy Logic Controller. In a simulation using logic controller and controller PID as well as the implementation of using controller pid having the averages error when processing charging and of spinning a discharging about 01 and about 114 . So this final project can help increase the efficiency of the centrifugal on sugar factory machine.



KeywordsMotor Induksi 3 Fasa; Mesin Sentrifugal; Fuzzy; PLC Mitsubishi Q-series
 
Subject:  NONE
Contributor
  1. Ir. Josaphat Pramudijanto, M.Eng.
  2. Eka Iskandar, ST., MT.
Date Create: 19/01/2015
Type: Text
Format: pdf
Language: Indonesian
Identifier: ITS-paper-22121160008953
Collection ID: 22121160008953
Call Number: RSE 621.313 6 Kur p


Source
Paper and Presentations, Electrical Engineering, RSE 621.313 6 Kur p, 2014

Coverage
ITS Community

Rights
Copyright @2016 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-paper-41490-2212105039-Paper.pdf - 523 KB
  2.  ITS-paper-41490-2212105039-Presentation.pdf - 941 KB
  3.  ITS-paper-41490-perancangan-dan-implementasi-pengaturan-kecepatan-motor-tiga-fasa-pada-mesin-sentrifugal-menggunakan.pdf - 1387 KB
  4.  ITS-paper-41490-Approval_Sheet.pdf - 507 KB
  5.  ITS-paper-41490-Abstract_id.pdf - 1537 KB
  6.  ITS-paper-41490-Abstract_en.pdf - 1536 KB
  7.  ITS-paper-41490-Preface.pdf - 1535 KB
  8.  ITS-paper-41490-Table_of_Content.pdf - 700 KB
  9.  ITS-paper-41490-Bibliography.pdf - 1541 KB
  10.  ITS-paper-41490-Biography.pdf - 1512 KB
  11.  ITS-paper-41490-Chapter1-1930404.pdf - 1885 KB
  12.  ITS-paper-41490-Conclusion-1571204.pdf - 1534 KB
  13.  ITS-paper-41490-Paper-1506227.pdf - 1471 KB
  14.  ITS-paper-41490-Presentation-4565125.pdf - 4458 KB




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