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New direct torque control of asynchronous motor with low ripple in torque and current, and quick response

机译:新的异步电动机直接转矩控制,转矩和电流波动小,响应速度快

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In traditional direct torque control, there is usually undesired torque and current ripple, variable switching frequency and acoustic noises. A new direct torque control method is proposed in this paper. By analyzing the effect of voltage vector on the stator flux and electromagnetic torque under consideration of the voltage drop on the stator resistance, one can point out that the necessary condition for the increase of torque and the critical condition of the flux change are neglected, on the basis of above analysis, then a new voltage vector selection table is proposed. The amplitude of the commanding voltage vector depends on the duty ratio which is derived from the errors of torque and flux only. The duty ratio is simplified by using a two-step design minimum torque ripple in this paper. Simulation and experimental results are illustrated confirming the correctness and validity of theoretical analysis and that the torque and current ripple are reduced while response time of the control system is increased in this paper.
机译:在传统的直接转矩控制中,通常会出现不希望的转矩和电流纹波,可变的开关频率和声音噪声。本文提出了一种新的直接转矩控制方法。通过考虑电压降对定子电阻的影响,分析电压矢量对定子磁通量和电磁转矩的影响,可以指出,忽略了转矩增加的必要条件和磁通量变化的临界条件。在以上分析的基础上,提出了新的电压矢量选择表。指令电压矢量的幅度取决于仅从转矩和磁通误差得出的占空比。通过采用两步设计的最小转矩纹波简化了占空比。通过仿真和实验结果验证了理论分析的正确性和有效性,同时减小了转矩和电流纹波,同时增加了控制系统的响应时间。

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