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Sensorless control of wound rotor synchronous machines using the switching of the rotor chopper as a carrier signal

机译:使用转子斩波器的切换作为载波信号的无传感器控制伤口转子同步机

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Wound rotor synchronous machines open up new possibilities in carrier signal based sensorless control since the rotor voltage serves as an additional input to the system and the field current as an additional, easy to measure, state variable. Approaches for sensorless control of PMSMs use the stator as the transmitter and as the receiver of the carrier signal. A new alternative for wound rotor synchronous machines is to use the field winding as the transmitter and the stator as receiver. Since the field inductance is usually very large, a signal injection into the rotor is not reasonable because large rotor voltages are obligatory to create detectable stator currents. Therefore the presented approaches make use of the switching of the dc-field chopper as a carrier signal. Two methods are compared: The first method evaluates the stator currents in rotor fixed coordinates using a tracking observer. The second one uses the stator currents in stator fixed coordinates to directly compute the rotor position. Both methods consider cross saturation effects. In contrast to approaches for carrier signal based sensorless control of PMSMs no differential magnetic saliency is mandatory. Moreover no additional signal injection is necessary. Experimental results prove the performance of the proposed methods.
机译:伤口转子同步机器在基于载体信号的无传感器控制中开辟了新的可能性,因为转子电压用作系统的额外输入和现场电流作为额外的,易于测量状态变量。 PMSMS的无传感器控制方法使用定子作为发射器,作为载波信号的接收器。卷绕转子同步机的新替代方案是使用现场绕组作为发射器和定子作为接收器。由于场电感通常非常大,因此进入转子的信号注入是不合理的,因为大转子电压是制造可检测的定子电流的义务。因此,所提出的方法利用DC场斩波器作为载波信号的切换。比较两种方法:使用跟踪观测器,第一方法评估转子固定坐标中的定子电流。第二个使用定子固定坐标中的定子电流直接计算转子位置。两种方法都考虑交叉饱和效果。相反,对于PMSMS的基于载波信号的无传感器控制,不强制差分磁性显着性。此外,不需要额外的信号注入。实验结果证明了所提出的方法的性能。

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