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Accurate Rotor Position Detection for Low-Speed Operation of Switched Reluctance Drives

机译:精确的转子位置检测,用于开关磁阻驱动器的低速操作

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Switched reluctance machines (SRMs) exhibit the advantages of low-cost production and high reliability. Position sensorless control can contribute significantly to further improve these properties. Due to the salient structure of the SRM, the stator inductance can be used to determine the rotor position θ_e from injected current peaks at standstill and low speeds. Exact torque and force control of SRMs requires highly accurate information about the machine's rotor position. Therefore, the purpose of this paper is to expose the advantages of position estimation algorithms implemented on field-programmable gate array (FPGA). The algorithm includes an inductance identification procedure and sophisticated signal filtering. Besides improvement measures based on modeling and signal conditioning, a method for reduction of the injection currents is demonstrated and evaluated. The developed algorithm considers the mutual coupling effect and is verified by simulation and experiment.
机译:交换机磁阻机(SRMS)表现出低成本生产和高可靠性的优点。位置无传感器控制可以显着贡献以进一步改善这些性质。由于SRM的突出结构,定子电感可用于从静止和低速以注入电流峰值测定转子位置θ_e。 SRMS的精确扭矩和力控制需要关于机器转子位置的高度准确信息。因此,本文的目的是暴露在现场可编程门阵列(FPGA)上实现的位置估计算法的优点。该算法包括电感识别过程和复杂的信号滤波。除了基于建模和信号调节的改进措施之外,还证明和评估了用于减少喷射电流的方法。开发算法考虑了相互耦合效果,并通过模拟和实验验证。

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