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A Position Estimation Method for Single-Phase Electrical Machines Without Injecting Extra Test Pulses

机译:不注入额外测试脉冲的单相电机的位置估计方法

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Sensorless position estimation algorithms for electromagnetic actuators are becoming increasingly significant in the field of control and condition monitoring since they allow the estimation of the actuator position without any mechanical sensor. Such algorithms typically exploit the position dependency of the actuator inductance. This work presents a new technique capable of identifying the inductance of a single-phase electromagnetic actuator in operation without having to add test pulses, achieving high accuracy and with little signal processing effort. Using this technique, the inductance behavior of an industrial solenoid is characterized. In a further step, the obtained characteristic is modeled by means of different curve fitting approaches and inverted for position estimation. The resulting position estimation technique is implemented and validated experimentally on the Investigated solenoid.
机译:电磁致动器的无传感器位置估计算法在控制和状态监视领域变得越来越重要,因为它们允许在没有任何机械传感器的情况下估计致动器位置。这样的算法通常利用致动器电感的位置依赖性。这项工作提出了一种新技术,该技术能够识别运行中的单相电磁致动器的电感,而无需添加测试脉冲,从而实现了高精度且信号处理工作量很小。使用这种技术,可以表征工业螺线管的电感特性。在进一步的步骤中,通过不同的曲线拟合方法对获得的特性进行建模,然后将其取反以进行位置估计。在研究的螺线管上实施并通过实验验证了所得的位置估计技术。

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