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Inductance Testing for IPM Synchronous Machines According to the New IEEE Std 1812 and Typical Laboratory Practices

机译:根据新IEEE STD 1812和典型实验室实践的IPM同步机的电感测试

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Equivalent circuit parameters serve as the basis for performance estimation and implementation of power electronic drives controls and therefore their accurate evaluation is very important. Specified in the newly approved IEEE Std 1812, a short-circuit test can be employed, in combination with an open-circuit measurement, in order to determine the back emf and the synchronous inductance. In the case of interior permanent magnet (IPM) machines, this approach can be used only to determine the d-axis inductance and additional and separate measurements are required for the q-axis inductance. In this respect, various methods, inclusive of dc step response tests, on-load tests, and a widely used test in industry, which involves locked-rotor measurements at variable voltage and constant frequency supply, are studied in detail, based on two-dimensional finite element analysis. Locked-rotor methods based on dc current supply and static torque versus rotor position measurements are introduced for determining the q-axis inductance in combination with the standardized open-circuit and short-circuit tests. A critical study of the inductances determined from different tests is conducted, and experimental results on an IPM motor design with non-sinusoidal back emf, relatively high torque ripple, and low leakage are presented.
机译:等效电路参数用作功率电子驱动器控制的性能估计和实现的基础,因此它们的准确评估非常重要。在新批准的IEEE STD 1812中指定,可以采用短路测试,与开路测量组合使用,以便确定后部EMF和同步电感。在内部永磁体(IPM)机器的情况下,该方法只能用于确定D轴电感,并且Q轴电感需要附加的测量。在这方面,详细研究了各种方法,包括DC步进响应试验,负载测试和在工业中广泛使用的测试,该方法涉及在可变电压和恒定频率供应下涉及锁定转子测量的锁定转子测量,基于两个 - 尺寸有限元分析。引入基于DC电流供应和静态扭矩的锁定转子方法与转子位置测量相结合,结合标准化的开路和短路测试来确定Q轴电感。对不同试验确定的电感的关键研究进行了研究,并提出了具有非正弦反电动势的IPM电机设计的实验结果,并且呈现了相对高的扭矩脉动和低泄漏。

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