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FPGA Implementation of a Three-Phase PLL and a Space Vector Modulator of a Matrix Converter for Future Electric Vehicles

机译:面向未来电动汽车的三相PLL和矩阵转换器的空间矢量调制器的FPGA实现

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The present work describes the FPGA implementation of a PLL synchronization method and a Space Vector Modulation (SVM) for a Matrix Converter destined to be used in future electric vehicles. The use of this implementation technique has three advantages: first, a rotating frame transformation is used as a phase detector; the implementation of the PLL and SVM is realized in a low-cost FPGA; and third, the implementation allows both faster processing time and switching action of a Master Digital Signal Processor (DSP) for other tasks, such as internal and external control loops of the power converter and parallel operation of control blocks. Simulation and experimental results are shown along the paper to verify the correct operation of the FPGA implementation, showing that the system PLL response is accurate to its ideal design with minimal delay effects.
机译:本工作描述了用于矩阵转换器的PLL同步方法和空间矢量调制(SVM)的FPGA实现,该矩阵转换器注定要在未来的电动汽车中使用。使用这种实现技术具有三个优点:首先,将旋转帧变换用作相位检测器;其次,将旋转帧变换用作相位检测器。 PLL和SVM的实现是在低成本FPGA中实现的;第三,该实施方式允许更快的处理时间和主数字信号处理器(DSP)的开关动作用于其他任务,例如功率转换器的内部和外部控制回路以及控制块的并行操作。本文显示了仿真和实验结果,以验证FPGA实现的正确操作,表明系统PLL响应准确到理想设计,延迟影响最小。

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