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Position sensorless control of transverse-laminated synchronous reluctance motors

机译:横向叠片式同步磁阻电动机的无位置传感器控制

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The sensorless control of the transverse-laminated synchronous reluctance motor is introduced, pointing-out the negative effect of cross-saturation. Then, an observer-based sensorless control scheme is proposed, which solves for this problem. Thus, a very good robustness against load variations is achieved. Moreover, the working speed is extended from zero to maximum speed, including the flux-weakening feature. This is obtained by a combined method of rotor position estimation, making use of both EMF-based estimation and signal injection, without any need of additional voltage. A prototype drive has been assembled, making use of a commercial motor, and the obtained experimental results are given. A dynamic performance is achieved which is near to that of a sensored control, in the whole speed range. Moreover, position-sensorless position control is feasible.
机译:引入了横向叠片式同步磁阻电动机的无传感器控制,指出了交叉饱和的负面影响。然后,提出了一种基于观测器的无传感器控制方案,解决了该问题。因此,获得了针对负载变化的非常好的鲁棒性。此外,工作速度从零扩展到最大速度,其中包括弱磁通功能。这是通过转子位置估计的组合方法获得的,该方法同时使用了基于EMF的估计和信号注入,而无需任何额外的电压。利用商用电动机组装了原型驱动器,并给出了获得的实验结果。在整个速度范围内,获得的动态性能接近传感器控制的动态性能。此外,无位置传感器位置控制是可行的。

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