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A Terminal Capacitance Method for Analyzing Global Capacitive Effects of Magnetic Components

机译:一种用于分析磁性元件整体电容效应的终端电容方法

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摘要

Periodic switching processes of transistors may cause high-level electromagnetic interference (EMI), which will conduct along magnetic components in the system and threaten electromagnetically sensitive facilities. In order to evaluate impacts of magnetic components on propagation of the EMI, it is necessary to investigate capacitive effects on the whole component, i.e., the global capacitive effects. In this case, detailed partial capacitance (PC) networks based on turn-to-turn and turn-to-ground capacitances may be impractical due to their size and the resultant computational burden. A terminal capacitance (TC) method characterized by explicit physical mechanism and high computation efficiency is proposed to analyze global capacitive effects of magnetic components. By defining coefficient matrix accounting for potential distribution of each winding, PCs corresponding to turns are decoupled to TCs corresponding to external terminals, and quantificational links between TCs and PCs are established with rigorous equations. Furthermore, TCs are directly deduced based on energy computation without having to compute PCs beforehand, making the TC method convenient and efficient. An air-core inductor and a two-winding transformer are used to verify the proposed TC method, and a smoothing reactor employed in the practical UHVdc engineering is used as an application of the method.
机译:晶体管的定期开关过程可能会导致高水平的电磁干扰(EMI),该电磁干扰会沿系统中的磁性组件传导,并威胁到对电磁敏感的设施。为了评估磁性元件对EMI传播的影响,有必要研究整个元件的电容效应,即整体电容效应。在这种情况下,基于匝间电容和匝间电容的详细局部电容(PC)网络可能不切实际,因为它们的大小和计算量大。提出了一种具有显着物理机制和高计算效率的终端电容(TC)方法来分析磁性元件的整体电容效应。通过定义考虑每个绕组电势分布的系数矩阵,将对应于匝数的PC解耦到对应于外部端子的TC,并使用严格的方程式建立TC和PC之间的量化链接。此外,TC是基于能量计算直接推导出的,而无需事先计算PC,这使得TC方法方便而有效。使用空心电感和两绕组变压器来验证所提出的TC方法,并在实际的UHVdc工程中使用的平滑电抗器用作该方法的应用。

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