Efficient FPGA implementation of field oriented control for 3-phase machine drives | Kütüphane.osmanlica.com

Efficient FPGA implementation of field oriented control for 3-phase machine drives

İsim Efficient FPGA implementation of field oriented control for 3-phase machine drives
Yazar Tüfekçi, Burak, Önal, Buğra, Dere, Hamza Yasir, Uğurdağ, Hasan Fatih
Basım Tarihi: 2020-09
Basım Yeri - IEEE
Konu Motor control, FPGA, FOC, BLDC, PMSM, CORDIC
Tür Belge
Dil İngilizce
Dijital Evet
Yazma Hayır
Kütüphane: Özyeğin Üniversitesi
Demirbaş Numarası 978-1-7281-9899-6
Kayıt Numarası 82bfb351-4ee2-4d11-8092-edf4a8a6c165
Lokasyon Electrical & Electronics Engineering
Tarih 2020-09
Örnek Metin This paper presents an FPGA implementation of Field Oriented Control (FOC) method with high switching frequency for 3-phase machine drives. A common architecture has been constructed for both BrushLess DC motors (BLDC) and Permanent Magnet Synchronous Motors (PMSM). For this purpose, the controller module has been implemented by using a hardware efficient algorithm, namely, Coordinate Rotation Digital Computer (CORDIC). The result of this implementation has been compared with the literature, and we claim that this paper's FPGA design has better performance in terms of area and speed with respect to other FPGA-based FOC designs.
DOI 10.1109/EWDTS50664.2020.9224884
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Efficient FPGA implementation of field oriented control for 3-phase machine drives

Yazar Tüfekçi, Burak, Önal, Buğra, Dere, Hamza Yasir, Uğurdağ, Hasan Fatih
Basım Tarihi 2020-09
Basım Yeri - IEEE
Konu Motor control, FPGA, FOC, BLDC, PMSM, CORDIC
Tür Belge
Dil İngilizce
Dijital Evet
Yazma Hayır
Kütüphane Özyeğin Üniversitesi
Demirbaş Numarası 978-1-7281-9899-6
Kayıt Numarası 82bfb351-4ee2-4d11-8092-edf4a8a6c165
Lokasyon Electrical & Electronics Engineering
Tarih 2020-09
Örnek Metin This paper presents an FPGA implementation of Field Oriented Control (FOC) method with high switching frequency for 3-phase machine drives. A common architecture has been constructed for both BrushLess DC motors (BLDC) and Permanent Magnet Synchronous Motors (PMSM). For this purpose, the controller module has been implemented by using a hardware efficient algorithm, namely, Coordinate Rotation Digital Computer (CORDIC). The result of this implementation has been compared with the literature, and we claim that this paper's FPGA design has better performance in terms of area and speed with respect to other FPGA-based FOC designs.
DOI 10.1109/EWDTS50664.2020.9224884
Özyeğin Üniversitesi
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