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The New High-Efficiency Hybrid Neutral-Point-Clamped Converter

机译:新型高效混合中性点钳位转换器

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This paper introduces a novel three-level voltage-source converter (VSC) as an alternative to known three-level topologies, including the conventional neutral-point-clamped converter (NPCC), many T-type VSCs, and active NPCC. It is shown that, operating in the low converter dc-link voltage range, this new solution not only can achieve higher efficiency than many typical three-level structures but also can overcome their drawback of asymmetrical semiconductor loss distribution for some operating conditions. Therefore, a remarkable increase of the converter output power capability and/or system reliability can be accomplished. The switching states and commutations of the converter, named here as hybrid NPCC (H-NPCC), are analyzed, and a loss-balancing scheme is introduced. Five- and seven-level H-NPCC topologies with loss-balancing features are also presented. Finally, a semiconductor-area-based comparison is used to further evaluate many three-level VSC systems. Interestingly, the total chip area of the proposed H-NPCC is already the lowest for low switching frequencies.
机译:本文介绍了一种新颖的三电平电压源转换器(VSC),以替代已知的三电平拓扑,包括常规的中性点钳位转换器(NPCC),许多T型VSC和有源NPCC。结果表明,在低转换器直流链路电压范围内工作时,该新解决方案不仅可以实现比许多典型的三电平结构更高的效率,而且还可以克服其在某些工作条件下半导体损耗分布不对称的缺点。因此,可以实现转换器输出功率能力和/或系统可靠性的显着提高。分析了转换器的开关状态和换向,这里称为混合NPCC(H-NPCC),并介绍了一种损耗平衡方案。还介绍了具有损失平衡功能的五级和七级H-NPCC拓扑。最后,基于半导体区域的比较用于进一步评估许多三级VSC系统。有趣的是,对于低开关频率,建议的H-NPCC的总芯片面积已经是最低的。

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