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Efficient Partial Element Calculation and the Extension to Cylindrical Elements for the PEEC Method

机译:高效的局部元素计算和PEEC方法的圆柱形元素的延伸

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For various electrical interconnect and EMC problems, the Partial Element Equivalent Circuit (PEEC) method has proven to be a valid and fast solution method of the electrical field integral equation in the time as well as the frequency domain. Therefore, PEEC has become a multipurpose full-wave simulation method, especially suited for the solution of combined circuit and EM problems, as found on printed circuit board layouts, power electronics devices or EMC filters. Recent research introduced various extensions to the basic PEEC approach, for example a non-orthogonal cell geometry formulation. This work presents a fast, flexible and accurate computational method for determining the matrix entries of partial inductances and the coefficients of potential for general non-orthogonal PEEC cell geometries. The presented computation method utilizes analytical filament formulas to reduce the integration order and therefore to reduce computation time. The validity, accuracy and speed of the proposed method is compared with a standard integration routine on example cell geometries where the numeric results of the new method show improved accuracy, coming along with reduced computation time. Furthermore, this work shows an extension to cylindrical elements which is consistent with classical PEEC models, using the proposed integration routines for the partial element calculations.
机译:对于各种电互通和EMC问题,部分元件等效电路(PEEC)方法已经证明是在时间和频域中的电场积分方程的有效和快速解决方法。因此,PEEC已成为多用途全波仿真方法,特别适用于组合电路和EM问题的解决方案,如印刷电路板布局,电力电子设备或EMC滤波器所发现。最近的研究引入了基本PEEC方法的各种延伸,例如非正交细胞几何形状配方。该工作介绍了一种快速,灵活,精确的计算方法,用于确定部分电感的矩阵条目和一般非正交PEEC细胞几何形状的潜力系数。所呈现的计算方法利用分析灯丝公式来减少积分顺序,从而利用分析顺序,从而降低计算时间。将所提出的方法的有效性,准确性和速度与示例电池几何形状的标准积分例程进行比较,其中新方法的数值结果显示出改善的精度,随着计算时间的降低而发挥作用。此外,这项工作显示了与典型PEEC模型一致的圆柱形元件的扩展,该圆柱形元件使用用于部分元素计算的所提出的集成例程。

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