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Digital control of two phase interleaved PFC and motor drive using MCU with CLA

机译:使用具有CLA的MCU对两相交错式PFC和电机驱动器进行数字控制

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Power Factor Correction (PFC) is used in power systems operating from single phase AC to correct for the non linearity of the rectifier. Use of PFC in motor drives is increasing because of increased regulation from the power utility side. However, integration of PFC and field oriented control of motor on a single controller remains challenging from a processor bandwidth point of view while keeping system costs down. The integration also brings challenges like better control of PFC output voltage under dynamic load and line condition while maintaining high input power factor. In this paper design of a motor control and PFC development hardware platform using a low cost microcontroller (MCU) is presented. Software and system integration challenges are illustrated and improvements to PFC algorithm using non linear control technique and anti windup integral controller are shown. It is further shown how the use of small footprint Control Law Accelerator (CLA) processor enables offloading control of PFC algorithm from the main core thus freeing up bandwidth to enable higher switching frequency operation of the power stage.
机译:功率因数校正(PFC)用于以单相交流电运行的电源系统,以校正整流器的非线性。由于电力公司方面的监管增加,PFC在电动机驱动器中的使用正在增加。但是,从处理器带宽的角度来看,在保持系统成本降低的同时,在单个控制器上集成PFC和对电动机进行磁场定向控制仍然具有挑战性。集成还带来了挑战,例如在动态负载和线路条件下如何更好地控制PFC输出电压,同时保持较高的输入功率因数。在本文中,提出了使用低成本微控制器(MCU)的电机控制和PFC开发硬件平台的设计。阐述了软件和系统集成方面的挑战,并展示了使用非线性控制技术和反饱和积分控制器对PFC算法的改进。进一步显示了使用小尺寸控制律加速器(CLA)处理器如何使PFC算法从主核上卸载控制,从而释放带宽以实现功率级的更高开关频率工作。

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