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Analysis of DC bus bar dominant stray parameters based on equivalent calculation models

机译:基于等效计算模型的直流母线主导杂散参数分析

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Purpose This paper aims to analyze the dominant stray parameters of the DC bus bar and focus on weakening the influence of the stray parameters instead of reducing the value of the stray parameters in DC bus bar while switching. By finding the mechanisms to reduce the effects of stray parameters on switching transient, the simple and straightforward optimization methods could be given for the engineering designer.Design/methodology/approach The investigations are focused on the equivalent circuit by segmented impedance evaluation in the low-frequency band and the energy propagation by wave impedance evaluation in the high frequency band. This paper proposes an equivalent impedance calculation model to locate the dominant stray parameters in the DC bus bar and takes the energy propagation characteristics using wave impedance into consideration, which can simplify the optimization design of DC bus bar.Findings According to the equivalent circuit and electromagnetic field analysis, this paper proves the existence of the dominant stray parameters in DC bus bar that is widely used on high-power converters and certifies that not all the stray parameters in different areas of DC bus bar have the same effects on switching process, which can give a good guidance for the optimization design of DC bus bar.Originality/value The positions of DC-link capacitors, resulting in only part of stray parameters in DC bus bar has more impact during switching, are significant to the DC bus bar optimization design. These stray parameters named dominant stray parameters in this paper play a leading role in the switching transient process. The area of DC bus bar, which is close to IGBTs and far from DC-link capacitors, contains the dominant stray parameters in the switching transient process. Therefore, the distance between DC-link capacitors and IGBTs should be shortened as much as possible. Based on the results, the efficiency for the DC bus bar optimization design could be improved by weakening the influence of the stray parameters, such as reducing the dominant stray parameters only. Therefore, it can save the cost and time of DC bus bar optimization design.
机译:目的本文旨在分析直流母线的主要杂散参数,并专注于削弱杂散参数的影响,而不是在切换的同时减少直流母线中的杂散参数的值。通过寻找减少杂散参数对切换瞬态效果的机制,可以对工程设计师提供简单而简单的优化方法.Design/methodology/ApproChe,在低的分段阻抗评估中,调查专注于等效电路。高频带中的波阻抗评估频带和能量传播。本文提出了一种等效的阻抗计算模型来定位直流母线中的主导杂散参数,并考虑使用波阻抗的能量传播特性,这可以简化根据等效电路和电磁的DC总线BAR.Findings的优化设计现场分析,证明了直流母线中的主导杂散参数的存在,该参数在高功率转换器上广泛使用,并证明并非直流母线的不同区域中的所有杂散参数对切换过程具有相同的影响,这可以给出直流母线优化设计的良好指导。ORIGINALITY / VALUE DC-LINK电容器的位置,导致直流母线中的一部分杂散参数在切换过程中具有更多影响,对直流母线优化具有重要意义设计。这些杂散参数在本文中命名主导杂散参数在开关瞬态过程中发挥着主导作用。直流母线的区域靠近IGBT,远离DC-Link电容器,在开关瞬态过程中包含主导的杂散参数。因此,应尽可能缩短DC链路电容器和IGBT之间的距离。基于结果,通过削弱杂散参数的影响,可以提高DC母线优化设计的效率,例如仅减少显性杂散参数。因此,它可以节省直流母线优化设计的成本和时间。

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