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An Overview of Capacitive DC-Links-Topology Derivation and Scalability Analysis

机译:电容性直流母线概述-拓扑推导和可扩展性分析

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Capacitive dc-links are widely used in voltage source converters for power balance, voltage ripple limitation, and shortterm energy storage. A typical solution, which uses aluminum electrolytic capacitors for such applications, is assumed to be one of the weakest links in power electronic systems, therefore, also becoming one of the lifetime bottlenecks of power electronic systems. Various passive and active capacitive dc-link solutions have been proposed intending to improve the reliability of the dc-links qualitatively, making great effort to diverting the instantaneous pulsating power into extra reliable storage components. In this paper, a generic topology derivation method for single-phase power converters with active capacitive dc-link integrated has been proposed, which can derive all existing topologies, and identify a few new topologies. According to the synthesis results, the main achievements in research on capacitive dc-link solutions are reviewed and presented chronologically as well as thematically ordered. Furthermore, the reliability-oriented design procedure is applied to size the chip area of active switching devices and the passive components to fulfill a specific lifetime target and system specification, as well as compare the overall capacitive energy storage, energy buffer ratio, and the cost of different solutions. The cost comparisons are performed with a scalable lifetime target and power rating. It reveals that different conclusions can be drawn with different lifetime targets in terms of cost-effectiveness.
机译:电容性直流链路广泛用于电压源转换器中,以实现功率平衡,电压纹波限制和短期能量存储。在这种应用中使用铝电解电容器的典型解决方案被认为是电力电子系统中最薄弱的环节之一,因此,也成为电力电子系统使用寿命的瓶颈之一。已经提出了各种无源和有源电容性直流链路解决方案,旨在从质量上提高直流链路的可靠性,并努力将瞬时脉动功率转移到额外的可靠存储组件中。本文提出了一种集成了有源电容式直流链的单相功率转换器的通用拓扑推导方法,该方法可以推导所有现有拓扑,并确定一些新拓扑。根据综合结果,按时间顺序和主题顺序回顾并介绍了电容性直流链路解决方案的主要研究成果。此外,面向可靠性的设计过程适用于确定有源开关器件和无源组件的芯片面积,以满足特定的寿命目标和系统规格,并比较整体电容式储能,能量缓冲比和成本不同的解决方案。使用可扩展的寿命目标和额定功率执行成本比较。它表明,就成本效益而言,可以针对不同的寿命目标得出不同的结论。

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