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Costless-Function Model Predictive Current Control of Seven-Phase PMSM to Improve Dynamic Performance and Suppress Harmonics of Marine Electric Propulsion System

机译:七相PMSM的性能功能模型预测电流控制提高船舶电动推进系统动态性能及抑制谐波

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摘要

In order to improve the dynamic performance and suppress current harmonic for seven-phase PMSM(permanent magnet synchronous motor),this paper proposed an MPCC(mode predict current control)scheme based on SVPWM(space vector pulse width modulation)technique.By this scheme,the 14 virtual voltage vectors are first calculated based on the principle:the voltage vector synthesized in the 3rd harmonic subspace and the 5th harmonic subspace should be zero,in each sampling period,the optimal voltage vector is directly selected from the 14 virtual voltage vectors to achieve the best output current performance of seven-phase PMSM.In addition,no cost function related calculations are required in the MPCC scheme,reducing the calculation time and improving the dynamic response of the system.The simulation model of the seven-phase PMSM vector control system is established by using the Simulink tool of MATLAB,and the effectiveness of the scheme will be presented.
机译:为了提高动态性能和抑制七相PMSM(永磁同步电动机)的电流谐波,本文提出了一种基于SVPWM(空间矢量脉冲宽度调制)技术的MPCC(模式预测电流控制)方案。该方案,首先基于该原理计算14个虚拟电压矢量:在第3次谐波子空间中合成的电压矢量应为零,在每个采样周期中,最佳电压矢量应该是从14个虚拟电压矢量中选择的最佳电压矢量为了实现七相PMSM的最佳输出电流性能。此外,MPCC方案中不需要成本函数相关的计算,从而减少计算时间并提高系统的动态响应。七相PMSM的仿真模型通过使用MATLAB的SIMULINK工具建立了矢量控制系统,并将呈现该方案的有效性。

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