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Research on Compensating Method of Flux Fluctuations in Permanent Magnet of AC Servo System

机译:交流伺服系统永磁体磁通波动补偿方法研究

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This paper suggests a compensating method of flux fluctuations in permanent magnet of AC servo system, after analyzing the characteristics and control measures of flux fluctuations, the compensation strategy for reducing the effect of flux fluctuations on electromagnetic torque is put forward. Though the simulation experiments it is shown that the flux compensation method for improving the position control accuracy of the movers when their running at high speed is proved to be positive effective. For CNC machine tools, industrial robots and other occasions involving sophisticated movement, synchronous servo motors in permanent magnet are usually driven by high-performance sine wave. In order to obtain good control performance, the high demands are put forward for reducing the torque fluctuations Torque fluctuations are an important factor to affect the stability of low speed servo drive system, high-speed stability and precision position control. There are many factors causing torque fluctuations, in which the flux fluctuations in permanent magnet are an important one.
机译:本文提出了AC伺服系统永磁体中的磁通量波动的补偿方法,分析了磁通波动的特性和控制措施,提出了降低电磁扭矩对电磁扭矩的影响的补偿策略。虽然模拟实验结果表明,当经过高速运行时,用于改善移动器的位置控制精度的磁通补偿方法是积极的有效性。对于CNC机床,工业机器人和其他涉及复杂运动的其他场合,永磁体中的同步伺服电机通常由高性能正弦波驱动。为了获得良好的控制性能,提出高要求来减少扭矩波动扭矩波动是影响低速伺服驱动系统的稳定性,高速稳定性和精密位置控制的重要因素。有许多导致扭矩波动的因素,其中永磁体中的磁通量波动是重要的。

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