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Magnetic modelling to capture geometry based impedance matrix for Busbar

机译:磁模型以捕获母线几何阻抗矩阵

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Bus bars are very critical components for power distribution in Electric Drive systems. The increase of power electronic components on vehicles, and their interaction, has increased the possibility of noticeable and destructive amplitude harmonics at resonant frequencies to exist in the power distribution network. The presence of stray inductance of bus bars along with the capacitance of the inverters creates a resonant circuit, which in turn can create instability in the system, so it is very critical to understand the performance and placement of Busbars in the system. As impedance is very much influenced by the geometry, shape, and materials of the bus bars, simulation tools can be utilized to accurately predict the impedance and this can be utilized to study the performance of the complete system and further optimize the busbar geometry as per system needs. This paper will discuss the virtual modeling procedure established using FEM for calculating inductance based on the magnetic field and current distribution obtained from the magnetic field analysis and further utilizes this data for system optimization.
机译:汇流条是电动驱动系统中配电的非常关键的部件。车辆上的电力电子元件的增加及其相互作用增加了在配电网络中以存在于谐振频率的显着和破坏性振幅谐波的可能性。汇流条的存在杂散电感以及逆变器的电容产生谐振电路,这又可以在系统中产生不稳定性,因此了解系统中母线的性能和放置非常重要。由于阻抗受到汇流条的几何形状,形状和材料的影响,可以利用模拟工具来准确地预测阻抗,这可以利用来研究完整系统的性能,并根据每种情况进一​​步优化汇流条几何系统需求。本文将讨论使用FEM建立的虚拟建模程序,用于基于磁场和从磁场分析获得的电流分布计算电感,并进一步利用该数据进行系统优化。

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