论文标题
寄生提取的宽带有限元元素阻抗计算
Broadband Finite-Element Impedance Computation for Parasitic Extraction
论文作者
论文摘要
寄生提取是机电设备设计过程中的强大工具,特别是作为检查电磁兼容性的工作流程的一部分。从CAD设备模型中提取阻抗的一种新颖方案,适合有限元的实现,以差异形式得出麦克斯韦方程。它为跨越频率范围的寄生提取提供了基础,并能够处理不均匀的拼写和渗透率,使其比现有的积分方程方法更灵活。该方法允许自动处理任意导体几何形状的多端口模型,而无需进行任何重要的手动用户互动。这是通过计算连接源电流密度来实现的,该密度将电流提供给模型的终端,无论其在模型中哪个位置,随后使用此电流密度来计算电场,并最终通过标量电势计算阻抗。概述了强制性的低频稳定方案,以确保在低频率下对模型进行稳定评估。从理论上处理了两个准危机近似和完美的电导体的特殊情况。在数值实验中,对分析模型验证了磁质量近似。此外,使用简单的电容器圈模型(包括介电绝缘和磁性核心材料)证明了治疗不均匀介电和渗透率的方法的内在能力。
Parasitic extraction is a powerful tool in the design process of electromechanical devices, specifically as part of workflows that check electromagnetic compatibility. A novel scheme to extract impedances from CAD device models, suitable for a finite element implementation, is derived from Maxwell's equations in differential form. It provides a foundation for parasitic extraction across a broad frequency range and is able to handle inhomogeneous permittivities and permeabilities, making it more flexible than existing integral equation approaches. The approach allows for the automatic treatment of multi-port models of arbitrary conductor geometry without requiring any significant manual user interaction. This is achieved by computing a connecting source current density that supplies current to the model's terminals, whatever their location in the model, subsequently using this current density to compute the electric field, and finally calculating the impedance via a scalar potential. A mandatory low-frequency stabilization scheme is outlined, ensuring a stable evaluation of the model at low frequencies as well. Two quasistatic approximations and the special case of perfect electric conductors are treated theoretically. The magnetoquasistatic approximation is validated against an analytical model in a numerical experiment. Moreover, the intrinsic capability of the method to treat inhomogeneous permittivities and permeabilities is demonstrated with a simple capacitor-coil model including dielectric insulation and magnetic core materials.