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Rigorous evaluation of the vertex effects on the frequency-dependent circuit parameters of an open-ended microstrip line

机译:对开放式微带线的频率相关电路参数的顶点影响进行严格评估

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This study presents the original inclusion of right singular vertex conditions in integral equations solved by the method of moments for accurate evaluation of the frequency-dependent microstrip discontinuity models required in microwave integrated circuits (MIC) and monolithic microwave integrated circuits (MMIC) design. The 90/spl deg/ wedges singularity function for the current density, weighted with a novel sampling function for "corner cells," and the harmonic Green's function for shielded structures, is accurately and efficiently integrated in the conical geometry of the 90/spl deg/ sector. The frequency-dependent effective length and excess equivalent capacitance of a shielded open-ended microstrip line are calculated to a higher accuracy with respect to previous two-dimensional and three-dimensional "full wave analyses".
机译:这项研究提出了用矩量法求解的积分方程中最初包含右奇异顶点条件的方法,以精确评估微波集成电路(MIC)和单片微波集成电路(MMIC)设计所需的频率相关的微带间断模型。电流密度的90 / spl deg /楔形奇异函数,“拐角单元”的新颖采样函数和屏蔽结构的谐波Green函数加权后,被准确有效地集成到90 / spl deg的圆锥几何中/部门。相对于先前的二维和三维“全波分析”,以更高的精度计算了屏蔽的开放式微带线的频率相关有效长度和过量等效电容。

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