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Magnetic integration of the harmonic filter inductor for dual-converter fed open-end transformer topology

机译:用于双变换器馈电开路变压器拓扑的谐波滤波器电感器的磁集成

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摘要

Many high power converter systems are often connected to the medium voltage network using a step-up transformer. In such systems, the converter-side windings of the transformer can be configured as an open-end and multi-level voltage waveforms can be achieved by feeding these open-end windings from both ends using the dual-converter. An LCL filter with separate converter-side inductors for each of the converter is commonly used to attenuate the undesirable harmonic frequency components in the grid current. The magnetic integration of the converter-side inductors is presented in this paper, where the flux in the common part of the magnetic core is completely canceled out. As a result, the size of the magnetic component can be significantly reduced. A multi-objective design optimization is presented, where the energy loss and the volume are optimized. The optimization process takes into account the yearly load profile and the energy loss is minimized, rather than minimizing the losses at a specific operating point. The size reduction achieved by the proposed inductor is demonstrated through a comparative evaluation. Finally, the analysis is supported through simulations and experimental results.
机译:许多大功率转换器系统通常使用升压变压器连接到中压网络。在这样的系统中,可以将变压器的转换器侧绕组配置为开放端,并且可以通过使用双转换器从两端馈送这些开放端绕组来实现多电平电压波形。对于每个转换器,带有单独转换器侧电感器的LCL滤波器通常用于衰减电网电流中不希望的谐波频率分量。本文介绍了转换器侧电感器的磁集成,其中磁芯公共部分的磁通被完全抵消。结果,可以显着减小磁性部件的尺寸。提出了多目标设计优化,其中能量损失和体积被优化。优化过程考虑了年度负载曲线,并且使能量损失最小化,而不是使特定工作点的损失最小化。通过比较评估证明了所建议电感器实现的尺寸减小。最后,通过仿真和实验结果来支持分析。

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