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Indirect field oriented control of five-phase induction motor based on SPWM-CSI

机译:基于SPWM-CSI的五相感应电动机间接磁场定向控制

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Three-phase current source inverter (CSI)-based induction motor (IM) drives are attractive in MV applications since they feature a simple inverter structure, a lower switching dv/dt, and a reliable short circuit protection. Although multiphase machine topic, especially the five-phase one, gains considerable interest recently in literature, almost all the applied control methods are targeting voltage source inverters (VSIs). Using multiphase CSIs in multiphase machine applications is limited due to the difficulty of fulfilling the CSI gating requirements and the difficulty of modulation index control. In this paper, a five-phase SPWM-CSI is employed to drive a five-phase IM using indirect field oriented control (IFOC) through SPWM mapping technique with controlled modulation index. Additionally, the proposed method provides a reduced number of measurements, where the capacitor currents are automatically compensated via the modulation index controller. A simulation model has been built using MATLAB/SIMULINK to investigate the proposed system under different loading conditions.
机译:基于三相电流源逆变器(CSI)的感应电动机(IM)驱动器在MV应用中具有吸引力,因为它们具有简单的逆变器结构,较低的开关dv / dt和可靠的短路保护。尽管最近在文献中多相机器主题(尤其是五相机器主题)引起了人们的极大兴趣,但是几乎所有应用的控制方法都以电压源逆变器(VSI)为目标。由于难以满足CSI门控要求和调制指数控制的困难,因此在多相机器应用中使用多相CSI受到了限制。本文采用五相SPWM-CSI,通过具有受控调制指数的SPWM映射技术,通过间接场定向控制(IFOC)使用间接场定向控制(IFOC)驱动五相IM。另外,所提出的方法减少了测量次数,其中电容器电流通过调制指数控制器自动补偿。使用MATLAB / SIMULINK建立了仿真模型,以研究所建议的系统在不同负载条件下的情况。

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