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Cost assessment of three power decoupling methods in a single-phase power converter with a reliability-oriented design procedure

机译:具有可靠性导向设计过程的单相电力转换器中三种功率解耦方法的成本评估

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Electrolytic Capacitors (E-Cap) as the passive energy buffer in single-phase converter are often assumed to be the reliability bottleneck of power electronic system. Various Active Power Decoupling (APD) methods have been proposed intending to improve the reliability of the DC-link E-Caps qualitatively, making great effort to diverting the instantaneous pulsation power into extra reliable storage components. However, it is still an open question, which method is the most cost-effective one for a specific application with a given lifetime requirement. In this paper, two of the representative APD methods and the classical passive DC-link design method are evaluated from the reliability and cost perspective. 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. Component cost models are applied to obtain the overall cost of each DC-link design methods. The cost comparisons are performed with a lifetime target of 10 years and 35 years. It reveals that different conclusions can be drawn with different lifetime targets in terms of cost-effectiveness.
机译:电解电容器(E-Cap)作为单相转换器中的被动能量缓冲器通常被认为是电力电子系统的可靠性瓶颈。已经提出了各种有功功率去耦(APD)方法,其中打算在定性地提高DC-Link E-Caps的可靠性,从而大大努力将瞬时脉动功率转移到额外的可靠存储部件中。但是,它仍然是一个打开的问题,哪种方法是具有给定寿命要求的特定应用最具成本效益的问题。本文从可靠性和成本透视评估了两个代表性APD方法和经典无源直流链路设计方法。可靠性导向的设计过程适用于有源开关装置的芯片区域和无源元件的尺寸,以满足特定的寿命目标。组件成本模型应用于获得每个DC-Link设计方法的总成本。成本比较是以10年和35年的寿命目标进行。它揭示了在成本效益方面可以用不同的寿命目标绘制不同的结论。

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