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Determination of Differential Inductances for a Permanent Magnet assisted Synchronous Reluctance Machine with a Ribless Rotor

机译:带有Ribless转子的永磁辅助同步磁阻电机的差分电感的确定

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In the last decade permanent magnet assisted synchronous reluctance machines (PMaSynRM) have gained more interest. Compared to induction machines in industrial applications, a good efficiency is achieved due to low rotor losses. The low power factor of a pure synchronous reluctance machine is mitigated by assisting ferrite magnets. These magnets are environmentally friendly, cost-saving and do not suffer under strong price fluctuations. As a drawback, they offer a low energy density compared to rare-earth magnets. The considered machine includes a special ribless rotor which provides a high anisotropy and low cross-coupling over the whole current operating area. Hence, the machine is well suited for sensorless operation. Furthermore, a high anisotropy has a positive impact on the torque. Differential inductances have a strong influence on the current waveform and on the sensorless control capability at low or zero speed. Therefore, the differential inductances are evaluated via three approaches: Finite Element Analysis, the flux linkages and test signal injection.
机译:在过去的十年中,永磁辅助同步磁阻电机(PMaSynRM)引起了越来越多的兴趣。与工业应用中的感应电机相比,由于转子损耗低,因此可以实现良好的效率。纯同步磁阻电机的低功率因数可通过辅助铁氧体磁体来缓解。这些磁铁对环境友好,节省成本,并且不受价格剧烈波动的影响。缺点是,与稀土磁体相比,它们的能量密度低。所考虑的机器包括一个特殊的无肋转子,该转子在整个当前工作区域内提供高各向异性和低交叉耦合。因此,该机器非常适合无传感器操作。此外,高的各向异性对扭矩有积极的影响。差分电感对电流波形以及低速或零速无传感器控制能力有很大影响。因此,可通过三种方法评估差分电感:有限元分析,磁链和测试信号注入。

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