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A New SVPWM-based Control Scheme of Permanent Magnetic Brushless DC Machine with Trapezoidal Back EMF Waveforms

机译:具有梯形反向EMF波形的永磁无刷直流机基于SVPWM的基于SVPWM的控制方案

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Compared to permanent magnetic brushless DC machine with trapezoidal back EMF waveforms (BLDCM), permanent magnetic synchronous machine with sinusoidal back EMF waveforms (PMSM) has superior performance. To enhance performances of BLDCM, this paper adopts a new type oriented vector control strategy. Contrary to traditional rotor-flux oriented vector control in PMSM, the new control strategy takes back EMF as the oriented vector for improving the capability of maximum torque per ampere (MTPA) of BLDCM and reducing the torque ripple [1]. Also, a Space vector PWM modulation (SVPWM) based on "120° conduction mode" is utilized for three-phase bridge inverter [2]. Combined the oriented strategy aforementioned with proposed SVPWM method, a new control system is constructed. Simulation validates effectiveness of this new control scheme.
机译:与具有梯形反向EMF波形(BLDCM)的永磁无刷直流机相比,具有正弦波反电动势波形(PMSM)的永磁同步机具有卓越的性能。为了增强大型大型市场的性能,本文采用新型面向载体控制策略。与PMSM中传统的转子通量导向载体控制相反,新的控制策略将EMF作为取向载体回吐,以改善BLDCM每安培(MTPA)的最大扭矩的能力并减小扭矩纹波[1]。此外,基于“120°传导模式”的空间矢量PWM调制(SVPWM)用于三相桥式逆变器[2]。结合了以上采用所提出的SVPWM方法的面向策略,构建了一种新的控制系统。仿真验证了这种新控制方案的有效性。

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