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Zynq-based SoC Implementation of an Induction Machine Control Algorithm

机译:基于Zynq的SOC实现了一种感应机控制算法

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In this paper, a new hardware/software design and implementation of an Induction Machine (IM) drive control topology is presented. Power electronic applications such as three-phase inverter require highly accurate switching frequency. This design uses a System on Chip (SoC) approach and implemented on a Field Programmable Gate Array (FPGA). The on-chip processor is used for high level programing while the FPGA's programmable fabric is used to create precise gating signals for a three-phase inverter. These signals are generated in the hardware side of the design. Floating-point calculations and control flow of the whole design are managed by SoC. This method is suitable for any power electronic application where precise gating signals are required. The methodology used in this solution is explained and experimental results are presented.
机译:在本文中,提出了一种新的硬件/软件设计和进一步机器(IM)驱动控制拓扑的实现。电力电子应用,如三相逆变器需要高精度的开关频率。该设计使用芯片上的系统(SOC)方法,并在现场可编程门阵列(FPGA)上实现。片上处理器用于高级编程,而FPGA的可编程结构用于为三相逆变器创建精确的门控信号。这些信号在设计的硬件侧生成。整个设计的浮点计算和控制流程由SoC管理。该方法适用于任何需要精确的门控信号的电力电子应用。解释该解决方案中使用的方法,并提出了实验结果。

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