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Time-domain Formulation of a Multi-layer Plane Circuit Coupled with Lumped-parameter Circuits using Maxwell Equations

机译:使用MAXWELL方程与大块参数电路耦合的多层平面电路的时域配方

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We calculate electromagnetic phenomena in the multi-layer plane circuit starting from the Maxwell equations. We present a numerical method of potential and current density in two-dimensional conductors, where their time developments are treated as phenomena of wave propagation. We treat the plane conductors by dividing them into small finite-volume elements, similar to the case of the partial element equivalent circuit method, and the transport equations are then solved by the finite-difference time-domain method. Furthermore, we develop a calculation method for the boundary in a multi-layer plane by applying the method we have used in multi-transmission lines. We formulate the boundary conditions of a multi-layer plane coupled with lumped-parameter circuits and introduce an algorithm to reduce calculation costs that are largely associated with the two-dimensional extension from the multi-transmission-line case. We perform calculations of the wave propagation of potential, current density, and charge density in the time domain for a simple plane circuit. These calculations are presented as supplementary materials of the present paper.
机译:从麦克斯韦方程开始,我们计算多层平面电路中的电磁现象。我们在二维导体中提出了一种潜在的电位和电流密度的方法,其中它们的时间发展被视为波传播的现象。我们通过将它们划分为小的有限体积元件来处理平面导体,类似于部分元素等效电路方法的情况,然后通过有限差分时域方法解决传输方程。此外,我们通过应用我们在多传输线中使用的方法来开发用于多层平面中的边界的计算方法。我们制定与集总参数电路耦合的多层平面的边界条件,并引入算法以降低从多传输线壳体的二维延伸部门的计算成本。我们在简单平面电路中执行电位,电流密度和电荷密度的波传播的计算。这些计算呈现为本文的补充材料。

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