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Electric Machine Drive Design Improvements Through Control and Digital Signal Processing Techniques

机译:通过控制和数字信号处理技术改善电机驱动设计

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Developing the control algorithms of electric machine drives for less noise and harmonics is proposed here for design improvements. Modern control algorithms for electric machine drives are implemented, and their radiated magnetic fields are measured and imported into a digital signal processing unit. The measurement was implemented using magnetic field antennas which cover low frequencies. A digital signal processing unit was designed for online and real-time measurement and processing of the fields, and categorizing the harmonics. The controller compares the desired and measured signals and modifies the duty cycle of the switches to suppress the existing harmonics. The manual and automatic suppressions of some critical harmonics were implemented in two switching techniques using a defined procedure. Consequently, the modified control algorithm of the drive would radiate the electromagnetic stray field with less noise and harmonics. This leads to lower electromagnetic interference from the machine drive. Since there is no need to locate any sensor inside the machine or the converter, this can be considered as a nondestructive method for industry implementations, where it is impossible to access the parameters of components for online monitoring.
机译:为了改善设计,在此提出了开发电机驱动器的控制算法以减少噪声和谐波的方法。实现了用于电机驱动器的现代控制算法,并测量了它们的辐射磁场并将其输入到数字信号处理单元中。使用覆盖低频的磁场天线进行测量。设计了一个数字信号处理单元,用于在线和实时测量和处理磁场,并对谐波进行分类。控制器比较所需信号和测量信号,并修改开关的占空比以抑制现有谐波。某些关键谐波的手动和自动抑制是通过两种开关技术使用已定义的过程实现的。因此,改进的驱动器控制算法将以较少的噪声和谐波辐射电磁杂散场。这样可以降低机器驱动器产生的电磁干扰。由于无需在机器或变频器内放置任何传感器,因此对于无法实现在线监控的组件参数访问的行业实施,这可以视为一种非破坏性方法。

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