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Modeling and Control for Cage Rotor Dual Mechanical Port Electric Machine—Part II: Independent Control of Two Rotors

机译:笼式转子双机械端口电机的建模与控制-第二部分:两个转子的独立控制

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摘要

Application of electric machines in the traction and transmission systems of hybrid/electric vehicles has been studied for many years. The hybrid vehicle based on dual mechanical port (DMP) electric machine has gained more and more attention, because it eliminates the need for planetary gear and combines the motor and the generator into a compact electric machine. The DMP machine with a squirrel-cage outer rotor (SCDMP) is investigated in this paper. Due to its unique electromagnetic characteristics, control algorithms for conventional machines cannot be applied to the SCDMP machine. The methods to calculate the correct current commands and estimate the outer rotor flux position are proposed. Based on these two methods, a control algorithm for the SCDMP machine is proposed and estimated by simulation. The results show that the proposed control algorithm is able to independently control the torque productions and the flux levels of the two rotors of the SCDMP machine.
机译:电机在混合动力/电动汽车的牵引和传动系统中的应用已经研究了很多年。基于双机械端口(DMP)电机的混合动力汽车受到越来越多的关注,因为它消除了对行星齿轮的需求,并将电动机和发电机组合为紧凑型电机。本文研究了具有鼠笼式外转子(SCDMP)的DMP机床。由于其独特的电磁特性,常规机器的控制算法无法应用于SCDMP机器。提出了计算正确电流指令并估算外转子磁通位置的方法。基于这两种方法,提出了SCDMP机的控制算法,并通过仿真进行了估计。结果表明,所提出的控制算法能够独立地控制SCDMP机器的两个转子的转矩产生和磁通水平。

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