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High-Efficiency Current Control Methods Based on Multidimensional Feedback Quantization and Its Application to Three-Phase PMSM

机译:基于多维反馈量化的高效电流控制方法及其在三相永磁同步电机中的应用

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摘要

In a six-switch three-phase inverter, the conventional pulsewidth modulation (PWM) has six switching times in every switching period based on the average concept. The used multidimensional feedback quantized modulation (MDFQM) strategy selects one switching state and keeps it in every sampling period based on the minimization of filtered voltage errors between the desired voltage commands and the output voltages. The widths of the output voltage pulse are integer times the fixed sampling time in MDFQM. In this paper, two high-efficiency current control methods based on MDFQM are proposed. They integrate the MDFQM strategy and the current control function to minimize the filtered current errors between the desired current commands and the inverter current. Due to the main advantages of less switching numbers and more closed fundamental current, a high-efficiency performance is achieved. The proposed methods are applied to the current control of a three-phase permanent-magnet synchronous motor. The simulation results and experimental results verify the effectiveness of the proposed methods.
机译:在六开关三相逆变器中,基于平均概念,常规脉宽调制(PWM)在每个开关周期中都有六个开关时间。所使用的多维反馈量化调制(MDFQM)策略基于最小化了所需电压命令和输出电压之间的滤波电压误差,选择了一种开关状态并将其保持在每个采样周期中。输出电压脉冲的宽度是MDFQM中固定采样时间的整数倍。本文提出了两种基于MDFQM的高效电流控制方法。它们集成了MDFQM策略和电流控制功能,以最大程度地减少所需电流命令和逆变器电流之间的滤波电流误差。由于较少的开关数量和更多的基本电流,其主要优点是可以实现高效率。所提出的方法被应用于三相永磁同步电动机的电流控制。仿真结果和实验结果验证了所提方法的有效性。

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