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Mitigation of Current Harmonics in Inverter-Fed Permanent Magnet Synchronous Machines with Nonlinear Magnetics

机译:带有非线性磁性的逆变器式永磁同步电机中电流谐波的缓解

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Inverter nonlinearities and machine spatial harmonics yield unwanted machine current harmonics, causing control loop instabilities, additional losses and torque ripples. In this paper a method is presented that allows online identification and compensation of both effects for anisotropic permanent magnet synchronous machines with nonlinear magnetics. The method requires no additional sensors and only fundamental component machine model parameters. It can be implemented easily in existing inverter systems by software updates. Test bench measurements show significant improvements in the whole operational area. Measurements at nominal operation result in a motor current total harmonic distortion of 0.28 % which is less than a seventh of the uncompensated value. The functional principle is transferable to other machine types or grid applications enabling the mitigation of current harmonics in a wide field of applications. [1
机译:逆变器的非线性和机器空间谐波会产生有害的机器电流谐波,从而导致控制回路不稳定,附加损耗和转矩纹波。本文提出了一种方法,该方法可以在线识别和补偿具有非线性磁性的各向异性永磁同步电机的两种效应。该方法不需要额外的传感器,而只需要基本的组件机器模型参数。通过软件更新,可以在现有的逆变器系统中轻松实现该功能。测试台的测量结果表明,整个操作领域都有了显着改善。在标称运行条件下进行的测量导致电动机电流总谐波失真为0.28%,小于未补偿值的七分之一。该功能原理可以转移到其他机器类型或电网应用中,从而可以在广泛的应用领域中减轻电流谐波。 [1

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