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Field oriented control of five-phase synchronous reluctance motor drive with flexible 3rd harmonic current injection for high specific torque

机译:具有柔性3rd谐波电流注入的五相同步磁阻电动机驱动的现场导向控制,用于高特定扭矩

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It is shown that 3rd harmonic current injection can produce higher shaft torque than conventional sinusoidal current regulation in five-phase synchronous reluctance machines with salient-pole rotors. This paper investigates the field oriented control (FOC) including the hysteresis-type PWM current regulator of such machine under flexible 3rd harmonic current injection. It is concluded that the sinusoidal current injection can be viewed as a special case of combined fundamental plus 3rd harmonic current injection with 0 percent of 3rd harmonic current. The flexible FOC control algorithm is designed and the developed model is confirmed by the simulation results in Matlab/Simulink environment. The complete strategy has been implemented on a digital signal processor based five-phase synchronous reluctance motor drive fabricated in our laboratory. The experimental results verify the developed flexible fundamental plus third harmonic FOC.
机译:结果表明,3RD谐波电流喷射可以比具有凸极转子的五相同步磁阻机中的传统正弦电流调节产生更高的轴扭矩。本文调查了柔性3谐波电流注射下这种机器磁磁型PWM电流调节器的磁场取向控制(FOC)。得出结论是,正弦电流注入可以被视为合并基本基础加第3次谐波电流注射的特殊情况,占3次谐波电流的0%。设计了灵活的FOC控制算法,并通过Matlab / Simulink环境的仿真结果确认了开发的模型。完整的策略已经在我们实验室制造的基于数字信号处理器的五相同步磁阻电动机驱动器上实施。实验结果验证了开发的灵活的基础加第三次谐波Foc。

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