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Electromagnetic performance analysis of synchronous reluctance machines having non-overlapping concentrated winding and AC sinusoidal bipolar with DC bias excitation

机译:具有非重叠集中绕组的同步磁阻机的电磁性能分析,DC偏置激励具有非重叠浓缩绕组和交流正弦波波拉

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This paper describes the operation principle and electromagnetic performance of synchronous reluctance (SynR) machines having the structure of the switched reluctance (SR) machines but excited by AC sinusoidal current with DC bias, i.e. salient-pole SynR with non-overlapping concentrated windings and DC bias excitation. Under such excitation, the machine becomes very similar to the permanent magnet (PM) counterparts. The DC bias, which is equivalent to the PM excitation, produces back-emf in the AC coils as well as cogging torque. If the AC coils are injected by 3-phase sinusoidal currents, output torque will be generated on the machine shaft. The produced back-emf, cogging torque magnitude and period, and optimal AC current angle as well as optimal AC/DC current density ratio strongly depend on the way of winding connection. The maximum average torque can be achieved when the AC/DC current density ratio is 2 and symmetrical winding connection, which results in lower torque ripple, is employed. A prototype machine is built and tested to confirm the analyses and conclusions.
机译:本文介绍了具有开关磁阻(SR)机器结构的同步磁阻(SYNR)机器的操作原理和电磁性能,但是通过具有直流偏压的AC正弦电流激发,即具有非重叠浓缩绕组和DC的凸极SYNR偏见激励。在这种激励下,机器与永磁体(PM)对应物非常相似。等同于PM激励的直流偏置,在AC线圈中产生反电动势以及齿槽扭矩。如果通过3相正弦电流注入AC线圈,则将在机器轴上产生输出扭矩。产生的回电动势,齿槽扭矩幅度和周期,以及最佳的AC电流角度以及强烈的AC / DC电流密度比强烈取决于绕组连接的方式。当AC / DC电流密度比为2且对称绕组连接时,可以实现最大平均扭矩,从而导致扭转扭转纹波。建立并测试原型机以确认分析和结论。

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