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Influence of voltage harmonics and cogging torque on speed deviations of servo drives with permanent magnet synchronous motors

机译:电压谐波和齿槽转矩对永磁同步电动机伺服驱动器速度偏差的影响

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The paper describes the influence of EMF harmonics and cogging torque on speed deviations of servo drives with PMsynchronous motors. A whole range of different production machines has high requirements in terms of low speed deviations, e.g. printing machines, laser cutting machines, tooling machines and applications with path traversing. A servo drive consists of a permanent magnet synchronous machine with an angle sensor, a PWM inverter, and a current and speed controller. The voltage harmonics produce torque oscillation, an so does the cogging torque. Due to this, the harmonics and the cogging lead to speed oscillations. This paper analyzes the influence using a dynamic model for the drive and the controller. The dynamic model simulates the speed of the drive in dependence on the gains of the controller as well as the value of harmonics and cogging. Numerical simulations are made with a synchronous servo motor with a rated torque of 2.8 Nm at 3800 1/min , and a maximum torque of 11.6 Nm. The simulations are done with various EMF harmonics and cogging torques. The speed deviation is calculated on the basis of the difference of highest and lowest speeds. In summary, the cogging torque is the main influence on speed deviations at low speeds whereas the voltage harmonics cause the major portion of the speed deviations at high speeds.
机译:本文描述了电动势谐波和齿槽转矩对永磁同步电动机伺服驱动器速度偏差的影响。各种不同的生产机器在低速偏差方面有很高的要求,例如印刷机,激光切割机,工具机以及具有路径遍历的应用程序。伺服驱动器由带有角度传感器的永磁同步电机,PWM逆变器以及电流和速度控制器组成。电压谐波会产生转矩振荡,齿槽转矩也会产生振荡。因此,谐波和齿槽效应导致速度振荡。本文使用动态模型对驱动器和控制器进行了分析。动态模型根据控制器的增益以及谐波和齿槽效应的值来模拟驱动器的速度。使用同步伺服电机进行数值模拟,其额定扭矩为2.8 Nm,在3800 1 / min时,最大扭矩为11.6 Nm。仿真是通过各种EMF谐波和齿槽转矩完成的。速度偏差是根据最高和最低速度之差计算得出的。总之,齿槽转矩是低速时速度偏差的主要影响因素,而电压谐波则是高速时速度偏差的主要部分。

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