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New sensorless rotor position detection technique of PMSM based on direct flux control

机译:基于直接磁通控制的永磁同步电机无传感器转子位置检测新技术

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Sensorless rotor position detection techniques have been gradually developed and proposed, which means that recently available methods can improperly work in some specific conditions. A proper and reliable method is needed. Consequently, a new sensorless rotor position detection technique of permanent magnetic synchronous machines (PMSMs) is proposed in this paper. The proposed method is achieved based on flux linkage signals with access to the neutral point of the machine, which is called direct flux control (DFC) method and it is unnecessary to measure the machine currents. Two simulation environments, MATLB/Simulink and a cooperative simulation with Simplorer and Maxwell, are investigated. The nonlinear magnetization curve (BH curve) is also taken into account, which is impossible to do in the synchronous frame, but possible to process by finite element methods (FEM) implemented in Maxwell. The PMSM model with the nonlinear BH curve can similarly operate as a real PMSM. Moreover, the calculated electric position, done by the proposed method, strongly confirms the possibility to acquire the rotor position for a wide range of speed, including standstill.
机译:无传感器转子位置检测技术已经逐渐发展和提出,这意味着最近可用的方法可能无法在某些特定条件下正常工作。需要一种正确而可靠的方法。因此,本文提出了一种新的永磁同步电机无传感器转子位置检测技术。所提出的方法是基于通向电机中性点的磁链信号实现的,该方法称为直接磁通控制(DFC)方法,无需测量电机电流。研究了两种仿真环境MATLB / Simulink以及与Simplorer和Maxwell的协同仿真。还考虑了非线性磁化曲线(BH曲线),这在同步框架中是不可能的,但是可以通过在Maxwell中实现的有限元方法(FEM)进行处理。具有非线性BH曲线的PMSM模型可以类似地用作实际PMSM。此外,通过所提出的方法完成的计算出的电位置强烈证实了获得包括静止在内的大范围转速的转子位置的可能性。

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