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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Three-Dimensionally Nonorthogonal Alternating-Direction Implicit Finite-Difference Time-Domain Algorithm for the Full-Wave Analysis of Microwave Monolithic Circuit Devices
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Three-Dimensionally Nonorthogonal Alternating-Direction Implicit Finite-Difference Time-Domain Algorithm for the Full-Wave Analysis of Microwave Monolithic Circuit Devices

机译:微波单片电路器件全波分析的三维非正交交替方向隐式有限差分时域算法

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摘要

An alternating-direction implicit finite-difference time-domain (FDTD) algorithm is applied to the full wave analysis of microwave integrated circuit devices. A 3-D multidomain method is developed in nonorthogonal coordinates. Nonorthogonal grids are only used for the anomalistic regions of a complex structure, whereas the standard FDTD lattice is used for the other regions. By using the Jacobian coordinate transformation, curvilinear coordinates can be converted into conventional FDTD format expediently. The perfectly matched layer is used to truncate the boundary. Accurate griddings using the new scheme are obtained, and the complexity of the algorithm is minimal. To illustrate the theory, a sinusoidal plane wave and a Gaussian pulse that propagate through a localized nonorthogonal grid space is used, and the stability of our code is examined. A newly developed compact microstrip bandpass filter is analyzed using the proposed method. The simulated results agree very well with measurements. As compared to other nonorthogonal FDTD (NFDTD) method, the proposed algorithm is much more efficient than other NFDTD counterpart when complex structures are analyzed.
机译:将交替方向隐式有限差分时域(FDTD)算法应用于微波集成电路器件的全波分析。在非正交坐标系中开发了一种3-D多域方法。非正交网格仅用于复杂结构的异常区域,而标准FDTD格用于其他区域。通过使用雅可比坐标变换,曲线坐标可以方便地转换为常规FDTD格式。完美匹配的层用于截断边界。使用新方案获得了准确的网格,并且算法的复杂度最小。为了说明这一理论,使用了正弦波和通过局部非正交网格空间传播的高斯脉冲,并检验了我们代码的稳定性。使用提出的方法分析了新开发的紧凑型微带通滤波器。模拟结果与测量结果非常吻合。与其他非正交FDTD(NFDTD)方法相比,在分析复杂结构时,该算法比其他NFDTD同类算法效率更高。

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