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A finite set-model predictive control based on fpga flatform for eleven-level cascaded h-bridge inverter fed induction motor drive

Van Chung School of Electrical Engineering, Hanoi University of Science and Technology, Hanoi, Viet Nam|
Phuong (57226692688) | Do Tuan (57218881016); Vu | Mai (57218875213); Anh Hung Vuong university, Nguyen Tat Thanh, Nong Trang, Viet Tri, Phu Tho, Viet Nam|

International Journal of Power Electronics and Drive Systems Số 2, năm 2021 (Tập 12, trang 845-856)

ISSN: 20888694

ISSN: 20888694

DOI: 10.11591/ijpeds.v12.i2.pp845-856

Tài liệu thuộc danh mục:

Article

English

Tóm tắt tiếng anh
Model predictive control has been considered as a powerful alternative control method in power converters and electrical drives recently. This paper proposes a novel method for finite control set predictive control algorithm for an induction motor fed by 11-level cascaded H-Bridge converter. To deal with the high computation volume of MPC algorithm applied for CHB converter, 7-adjacent vectors method is applied for calculating the desired voltage vector which minimizes the cost function. Moreover, by utilizing field programmable gate array (FPGA) platform with its flexible structure, the total execution time reduces considerably so that the selected voltage vector can be applied immediately without delay compensation. This method improves the dynamic responses and steady-state performance of the system. Finally, experimental results verify the effectiveness of control design. � 2021, Institute of Advanced Engineering and Science. All rights reserved.

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