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Experiment-based Comparative Analysis of Nonlinear Speed Control Methods for Induction Motors
Abstract
Field-oriented control (FOC) for induction motors is widely used in industrial applications. By using a fast and accurate torque controller based on a stator current controller it is possible to flexibly implement advanced speed control methods to achieve proper performance both in transient and steady-state states. In this study, a deadbeat controller was used for the current loop. The nonlinear methods used for the outer loop controller were backstepping, flatness-based control, and exact feedback linearization with state derivative. The dynamic responses of these three controls were compared through various experimental results. The advantages and disadvantages of the different control structures were analyzed and evaluated in detail. Based on this evaluation, an appropriate scheme can be specified when deployed in practice.
Ketersediaan
JETS15a-012 | JETS V53N2 Maret 2021 | Perpustakaan FT UPI YAI | Tersedia |
JETS15b-012 | JETS V53N2 Maret 2021 | Perpustakaan FT UPI YAI | Tersedia |
Informasi Detil
Judul Seri |
Journal of Engineering and Technological Sciences
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No. Panggil |
JETS V53N2 Maret 2021
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Penerbit | ITB Journal Publisher : Bandung., 2021 |
Deskripsi Fisik |
hlm : 359-377
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Bahasa |
English
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ISBN/ISSN |
2337-5779
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Klasifikasi |
JETS
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Tipe Isi |
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Tipe Media |
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Tipe Pembawa |
-
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Edisi |
Volume 53 Nomor 2 Maret 2021
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Subyek | |
Info Detil Spesifik |
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Pernyataan Tanggungjawab |
-
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Versi lain/terkait
Tidak tersedia versi lain