Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2024, Erken Görünüm, 1 - 1
https://doi.org/10.29109/gujsc.1557811

Öz

Proje Numarası

1919B012206044

Kaynakça

  • [1] Habyarimana M, Dorrell DG. Methods to reduce the starting current of an induction motor, IEEE International Conference on Power, Control, Signals and Instrumentation Engineering, 2018(34-38).
  • [2] Negm MMM, Bakhashwain JM, Shwehdi MH. Speed control of a three-phase induction motor based on robust optimal preview control theory, IEEE Transactions on Energy Conversion, 2006; 21: 77-84.
  • [3] Larabee J, Pellegrino B, Flick B. Induction motor starting methods and issues, Rec. Conf. Pap. - Annu. Pet. Chem. Ind. Conf., 2005(217-222).
  • [4] Morizane T, Tsujikawa K, Kimura N. Control of Traction and Levitation of Linear Induction Motor Driven by Power Source With Frequency Component Synchronous With the Motor Speed, IEEE Transactions on Magnetics, 2011; 47: 4302-4305.
  • [5] VanderMeulen H, Natali TJ, Dionise TJ, Paradiso G, Ameele K. Exploring New and Conventional Starting Methods of Large Medium-Voltage Induction Motors on Limited kVA Sources, IEEE Trans. Ind. Appl., 2019; 698: 1-10.
  • [6] Danang Wijaya F, Kusumawan SA, Prabowo H. Reducing induction motor starting current using magnetic energy recovery switch (MERS), International Conference on Information Technology and Electrical Engineering, 2014(1-6).
  • [7] Tohir T, Habinuddin E, Ilman SM, Putra FAS, Anwar H, Fadilah RA. Comparative Study of Inrush Current On Star, Delta, and Star-Delta Starters for a 1,5kW Three Phase Induction Motor with Power Quality Analyzer and Powertag, 2023 Innovations in Power and Advanced Computing Technologies (i-PACT), 2023; 1: 1-7.
  • [8] Vadi S, Bayindir R, Toplar Y, Colak I. Induction motor control system with a Programmable Logic Controller (PLC) and Profibus communication for industrial plants - An experimental setup, ISA Transactions, 2022; 122: 459-471.
  • [9] Du J, Mo G, Wu G, Huang K. An improved method for induction motor constant current soft-starting using fuzzycontrol, International Conference on Fuzzy Systems and Knowledge Discovery, 2009(52-56).
  • [10] Baimel D, Rabinovici, R. The performance of thyristor operated induction generator with stator connected in star, delta and delta with thyristors inside, 18th International Conference on Electrical Machines, Portugal, 2008(1-6).
  • [11] Demirbaş Ş, Irmak E, Bayhan S, Colak I. Torque and Speed Control Of Wound Rotor Inductıon Motor By Adjustıng The Rotor Resıstance Wıth A Microcontroller, J. Fac. Eng. Arch. Gazi Univ., 2008; 23: 801-809.
  • [12] Fredemar Runcos CG, Stringari E. Benefit and drawbacks of low inrush large induction squirrel case electric motors, IEEE Petroleum and Chemical Industry Technical Conference (PCIC), 2020(257-268).
  • [13] Shuai Y, Jiang D, Chen Z, Liu Z, Sun H., Li P. Study of Star-Delta Soft Switch to Extend AC Motor High Speed Operation Region, CES Transactions on Electrical Machines and Systems, 2023; 7: 248-255.
  • [14] Stermecki I, Tičar I, Zagradisnik Kitak P. FEM-based design of an induction motor’s part winding to reduce the starting current, IEEE Trans. Magn., 2006; 42: 1299-1302.
  • [15] Lei Y, Zhao Z, Wang S, Dorrell DG, Xu W. Design and Analysis of Star–Delta Hybrid Windings for High-Voltage Induction Motors, IEEE Transactions on Industrial Electronics, 2011; 58: 3758-3767.
  • [16] Ferreira FJTE, Ge B, Quispe EC, De Almeida, AT. Star and delta connected windings tolerance to voltage unbalance in induction motors, International Conference on Electrical Machines, 2014(2045-2054).
  • [17] Cistelecan MV, Ferreira FJTE, Popescu M. Adjustable Flux Three-Phase AC Machines With Combined Multiple-Step Star-Delta Winding Connections, IEEE Transactions on Energy Conversion, 2010; 25: 348-355.
  • [18] Huang H, Chang, L. Electrical two-speed propulsion by motor winding switching and its control strategies for electric vehicles, IEEE Transactions on Vehicular Technology, 1999; 48: 607-618.
  • [19] Ferreira FJTE. On the star, delta and star-delta stator winding connections tolerance to voltage unbalance, International Electric Machines and Drives Conference, 2016(1888-1894).

Control of Squirrel-Cage Asynchronous Motor Using Star-Delta Starting Method and Monitoring of Parameters Through Computer Interface

Yıl 2024, Erken Görünüm, 1 - 1
https://doi.org/10.29109/gujsc.1557811

Öz

Asynchronous motors, which are widely used in industry, draw very high current until the motor reaches its rated speed and torque, especially when it is lifted while connected to the load. These excessive currents can damage the motor itself and other equipment in the system. A starting method is needed as an initial control to start the motor. These starting methods limit these overcurrents and help the motor to reach its rated speed gradually without drawing too much current. In this study, an induction motor is controlled using star-delta starting method and circuit parameters are monitored. These parameters are sent to the computer with PLC(Programmable Logic Control) over OPC(Ole for Process Control) Server in real time and the parameters are processed and monitored on the user interface prepared on the Profi-LAB platform and the motor parameters are controlled.

Destekleyen Kurum

TÜBİTAK

Proje Numarası

1919B012206044

Teşekkür

Bu çalışma “TÜBİTAK 2209 - Üniversite Öğrencileri Araştırma Projeleri Destekleme Programı” kapsamında 1919B012206044 numaralı proje ile desteklenmiştir.

Kaynakça

  • [1] Habyarimana M, Dorrell DG. Methods to reduce the starting current of an induction motor, IEEE International Conference on Power, Control, Signals and Instrumentation Engineering, 2018(34-38).
  • [2] Negm MMM, Bakhashwain JM, Shwehdi MH. Speed control of a three-phase induction motor based on robust optimal preview control theory, IEEE Transactions on Energy Conversion, 2006; 21: 77-84.
  • [3] Larabee J, Pellegrino B, Flick B. Induction motor starting methods and issues, Rec. Conf. Pap. - Annu. Pet. Chem. Ind. Conf., 2005(217-222).
  • [4] Morizane T, Tsujikawa K, Kimura N. Control of Traction and Levitation of Linear Induction Motor Driven by Power Source With Frequency Component Synchronous With the Motor Speed, IEEE Transactions on Magnetics, 2011; 47: 4302-4305.
  • [5] VanderMeulen H, Natali TJ, Dionise TJ, Paradiso G, Ameele K. Exploring New and Conventional Starting Methods of Large Medium-Voltage Induction Motors on Limited kVA Sources, IEEE Trans. Ind. Appl., 2019; 698: 1-10.
  • [6] Danang Wijaya F, Kusumawan SA, Prabowo H. Reducing induction motor starting current using magnetic energy recovery switch (MERS), International Conference on Information Technology and Electrical Engineering, 2014(1-6).
  • [7] Tohir T, Habinuddin E, Ilman SM, Putra FAS, Anwar H, Fadilah RA. Comparative Study of Inrush Current On Star, Delta, and Star-Delta Starters for a 1,5kW Three Phase Induction Motor with Power Quality Analyzer and Powertag, 2023 Innovations in Power and Advanced Computing Technologies (i-PACT), 2023; 1: 1-7.
  • [8] Vadi S, Bayindir R, Toplar Y, Colak I. Induction motor control system with a Programmable Logic Controller (PLC) and Profibus communication for industrial plants - An experimental setup, ISA Transactions, 2022; 122: 459-471.
  • [9] Du J, Mo G, Wu G, Huang K. An improved method for induction motor constant current soft-starting using fuzzycontrol, International Conference on Fuzzy Systems and Knowledge Discovery, 2009(52-56).
  • [10] Baimel D, Rabinovici, R. The performance of thyristor operated induction generator with stator connected in star, delta and delta with thyristors inside, 18th International Conference on Electrical Machines, Portugal, 2008(1-6).
  • [11] Demirbaş Ş, Irmak E, Bayhan S, Colak I. Torque and Speed Control Of Wound Rotor Inductıon Motor By Adjustıng The Rotor Resıstance Wıth A Microcontroller, J. Fac. Eng. Arch. Gazi Univ., 2008; 23: 801-809.
  • [12] Fredemar Runcos CG, Stringari E. Benefit and drawbacks of low inrush large induction squirrel case electric motors, IEEE Petroleum and Chemical Industry Technical Conference (PCIC), 2020(257-268).
  • [13] Shuai Y, Jiang D, Chen Z, Liu Z, Sun H., Li P. Study of Star-Delta Soft Switch to Extend AC Motor High Speed Operation Region, CES Transactions on Electrical Machines and Systems, 2023; 7: 248-255.
  • [14] Stermecki I, Tičar I, Zagradisnik Kitak P. FEM-based design of an induction motor’s part winding to reduce the starting current, IEEE Trans. Magn., 2006; 42: 1299-1302.
  • [15] Lei Y, Zhao Z, Wang S, Dorrell DG, Xu W. Design and Analysis of Star–Delta Hybrid Windings for High-Voltage Induction Motors, IEEE Transactions on Industrial Electronics, 2011; 58: 3758-3767.
  • [16] Ferreira FJTE, Ge B, Quispe EC, De Almeida, AT. Star and delta connected windings tolerance to voltage unbalance in induction motors, International Conference on Electrical Machines, 2014(2045-2054).
  • [17] Cistelecan MV, Ferreira FJTE, Popescu M. Adjustable Flux Three-Phase AC Machines With Combined Multiple-Step Star-Delta Winding Connections, IEEE Transactions on Energy Conversion, 2010; 25: 348-355.
  • [18] Huang H, Chang, L. Electrical two-speed propulsion by motor winding switching and its control strategies for electric vehicles, IEEE Transactions on Vehicular Technology, 1999; 48: 607-618.
  • [19] Ferreira FJTE. On the star, delta and star-delta stator winding connections tolerance to voltage unbalance, International Electric Machines and Drives Conference, 2016(1888-1894).
Toplam 19 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Elektrik Makineleri ve Sürücüler, Kontrol Teorisi ve Uygulamaları, Otomasyon Mühendisliği
Bölüm Tasarım ve Teknoloji
Yazarlar

Seyfettin Vadi 0000-0002-4244-9573

Proje Numarası 1919B012206044
Erken Görünüm Tarihi 21 Kasım 2024
Yayımlanma Tarihi
Gönderilme Tarihi 29 Eylül 2024
Kabul Tarihi 12 Ekim 2024
Yayımlandığı Sayı Yıl 2024 Erken Görünüm

Kaynak Göster

APA Vadi, S. (2024). Control of Squirrel-Cage Asynchronous Motor Using Star-Delta Starting Method and Monitoring of Parameters Through Computer Interface. Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım Ve Teknoloji1-1. https://doi.org/10.29109/gujsc.1557811

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