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An efficient FPGA-based implementation of predictive current control algorithms for an indirect matrix converter

机译:基于FPGA的基于FPGA的间接矩阵转换器的预测电流控制算法的实现

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To provide higher speed and more flexibility, this paper presents a new implementation method of predictive current control (PCC) algorithms for an indirect matrix converter (IMC) using a digital signal processor (DSP) and a field programmable gate array (FPGA). In this method, the SPARTAN-3E FPGA is used as a master controller to execute the PCC and commutation algorithms and the TMS320F28335 DSP is used as a slave controller to sample voltages and currents and then transmit all sampling results and synchronization signals to the FPGA. A programming structure consisting of a top module and several reusable sub-modules is designed in FPGA delivering reduced development time and better time/area efficiency. Experimental results from an IMC prototype confirmed the practical feasibility of proposed implementation method.
机译:为了提供更高的速度和更大的灵活性,本文使用数字信号处理器(DSP)和现场可编程门阵列(FPGA)提出了一种用于间接矩阵转换器(IMC)的预测电流控制(PCC)算法的新实现方法。在该方法中,SPartan-3E FPGA用作主控制器以执行PCC和换向算法,并且TMS320F28335 DSP用作从控制器以采样电压和电流,然后将所有采样结果和同步信号传输到FPGA。由顶部模块和几个可重用子模块组成的编程结构设计在FPGA中,提供降低的开发时间和更好的时间/区域效率。 IMC原型的实验结果证实了所提出的实施方法的实际可行性。

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