A quantum direct torque control method for permanent magnet synchronous machines

被引:0
|
作者
Reda, Dermouche [1 ]
Talaoubrid, Abderrahmane [2 ]
Fazilat, Mehdi [3 ]
Zioui, Nadjet [3 ]
Tadjine, Mohamed [4 ]
机构
[1] ENSTA, Faculté de Médecine - Ctre biomédicale, Bordj El Kiffan, Alger, Algeria
[2] USTHB, Bab Ezzouar, Alger,16111, Algeria
[3] Université du Québec à Trois-Rivières, 3351 Bd des Forges, Trois-Rivières,QC,G8Z 4M3, Canada
[4] École Nationale Polytechnique, 10 Rue des Frères OUDEK, El Harrach, Algiers,16200, Algeria
来源
关键词
Comparators (optical) - Quantum computers - Quantum electronics - Quantum optics - Synchronous machinery;
D O I
10.1016/j.compeleceng.2024.109994
中图分类号
学科分类号
摘要
This study compares classical direct torque control (DTC) methods with a proposed quantum direct torque control (QDTC) strategy for synchronous machines. A quantum comparator is developed by implementing a quantum subtractor between real numbers ranging from -100 % to +100 %, and a quantum sign function is developed using this digital quantum subtractor. The QDTC implementation involved the use of quantum versions of the classic logical AND and OR gates. Simulation results indicate that the QDTC method significantly reduces torque ripple, with a ripple torque factor of 0.0392 compared to 0.0417 for the classical DTC. The QDTC approach also required 5.2 % fewer commutations (9.81 × 104) compared to the classical approach (1.035 × 105), which increases the longevity of the power components. Finally, the total harmonic distortion (THD) was lower for the QDTC method compared to the classical strategy. The results indicate that the proposed QDTC method either matches or surpasses the performance of the classical method across several metrics. Specifically, the reduced torque ripple and commutation frequency leads to smoother motor operation and longer component lifespans, while lower THD is indicative of greater motor efficiency. © 2024 The Author(s)
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