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Vector control of Counter-Rotating Permanent Magnet Synchronous Motor for underwater propulsion application

机译:水下推进应用反向旋转永磁同步电动机的矢量控制

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In this paper a Counter-Rotating Permanent Magnet Synchronous Motor (CR-PMSM) is designed and considered. The main different of CR-PMSM with traditional ones is in the way that the both rotor and armature are rotating in opposite direction. This kind of motor is very efficient and suitable for underwater propulsion applications. A speed adjusting controller based on the Vector Control Theory is applied to drive CR-PMSM. The mathematical model of CR-PMSM according to the ordinary PMSM and its operation principle is established. For investigation, entire system drive including CR-PMSM model, space vector pulse width modulation (SV-PWM) and vector control are simulated in MATLAB/SIMULINK. After that, the control system is executed on TMS320F2812 controller platform and applied for constructed CR-PMSM. The simulation and experimental results show prominent rule of vector control strategy in speed tracking for CR-PMSM.
机译:本文设计并考虑了反向旋转永磁同步电动机(CR-PMSM)。 CR-PMSM与传统CR-PMSM的主要区别在于,转子和电枢都沿相反方向旋转。这种电动机非常高效,适合水下推进应用。基于矢量控制理论的调速控制器被应用于驱动CR-PMSM。建立了基于普通永磁同步电机的CR-PMSM数学模型及其工作原理。为了进行研究,在MATLAB / SIMULINK中模拟了包括CR-PMSM模型,空间矢量脉冲宽度调制(SV-PWM)和矢量控制在内的整个系统驱动器。之后,该控制系统在TMS320F2812控制器平台上执行,并应用于构建的CR-PMSM。仿真和实验结果表明了矢量控制策略在CR-PMSM速度跟踪中的显着规律。

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