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Adopting a SOGI filter for flux-linkage based rotor position sensing of switched reluctance machines

机译:采用SOGI滤波器进行基于磁链的开关磁阻电机转子位置检测

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Position sensorless control of switched reluctance motors reduces the system cost and increases the drives overall reliability. The flux-linkage method is a commonly applied technique when sensorless control of switched reluctance motors is pursued. The sensing quality, though being sensitive to model errors and further effects, can be sufficient for a number of applications. However, sophisticated control algorithms like predictive direct instantaneous torque control and direct instantaneous force control require highly accurate rotor position estimation. Current profiling methods rely on accurate position sensing as well. The main objective of the present paper is the improvement of the conventional flux-linkage method by adopting a band pass filter and a self-characterization routine. As a result the estimation error can be crucially reduced and the operation area of the flux-linkage method can be expanded. The paper includes simulative and experimental validation of the algorithm.
机译:开关磁阻电机的无位置传感器控制可降低系统成本,并提高驱动器的整体可靠性。当追求开关磁阻电动机的无传感器控制时,磁链方法是一种普遍应用的技术。尽管对模型误差和其他影响敏感,但传感质量对于许多应用来说已经足够了。但是,复杂的控制算法(如预测直接瞬时转矩控制和直接瞬时力控制)需要高度精确的转子位置估计。当前的轮廓分析方法也依赖于精确的位置感测。本文的主要目的是通过采用带通滤波器和自表征程序对传统的磁链方法进行改进。结果,可以显着降低估计误差,并且可以扩大磁链方法的操作范围。本文包括该算法的仿真和实验验证。

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