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Reduction of EMI Noise Due to Nonideal Interleaving in a 100 kW SiC PV Converter

机译:降低由于100 kW SiC PV转换器中的非理想交错而产生的EMI噪声

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A Grid-tied inverter utilizing wide bandgap devices can achieve higher switching frequency resulting in a power filter with reduced size and weight. However, the increased switching frequency may lead to more switching harmonics entering the electromagnetic interference (EMI) frequency range, which will increase the size of EMI filter. Interleaving paralleled converters can cancel some of the switching harmonics and reduce the size of EMI filter. However, nonideal interleaving will deteriorate the harmonic canceling effect. In this research, the nonideal effects are found to be from the small mismatch of the pulsewidth of the interleaving legs and the mismatch of the impedance between the interleaving legs. A modulation method is proposed to completely eliminate the pulsewidth mismatch. Compared with other solutions, the proposed method does not require the information of filter parameters, neither gate driver synchronization, and nor a special function block of the digital controller. The proposed modulation was implemented on a 150 MHz digital signal processor and a 100 MHz field-programmable gate array, and was experimentally verified on a 100 kW parallel coupled SiC PV inverter prototype.
机译:利用宽带隙器件的并网逆变器可以实现更高的开关频率,从而使电源滤波器的尺寸和重量得以减小。但是,增加的开关频率可能导致更多的开关谐波进入电磁干扰(EMI)频率范围,这将增加EMI滤波器的尺寸。交错并行转换器可以消除一些开关谐波,并减小EMI滤波器的尺寸。但是,非理想的交织会降低谐波消除效果。在这项研究中,发现非理想的影响是由交错臂的脉冲宽度的较小失配和交错臂之间的阻抗的失配引起的。提出了一种调制方法以完全消除脉冲宽度失配。与其他解决方案相比,该方法不需要滤波器参数信息,栅极驱动器同步以及数字控制器的特殊功能块。提议的调制在150 MHz数字信号处理器和100 MHz现场可编程门阵列上实施,并在100 kW并联耦合SiC PV逆变器原型上进行了实验验证。

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