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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >An Efficient and Stable 2-D/3-D Hybrid Discontinuous Galerkin Time-Domain Analysis With Adaptive Criterion for Arbitrarily Shaped Antipads in Dispersive Parallel-Plate Pair
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An Efficient and Stable 2-D/3-D Hybrid Discontinuous Galerkin Time-Domain Analysis With Adaptive Criterion for Arbitrarily Shaped Antipads in Dispersive Parallel-Plate Pair

机译:高效且稳定的2-D / 3-D混合不连续Galerkin时域分析,具有自适应准则,适用于分散平行板对中任意形状的防垫板

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摘要

A hybrid 2-D and 3-D discontinuous Garlerkin time-domain (DGTD) method is proposed for transient analysis of multiple arbitrarily shaped antipads in a dispersive parallel-plate pair. In the proposed hybrid method, the domains where only the zeroth-order parallel-plate mode exists are modeled by the 2-D DGTD, and the remaining domains are modeled by the 3-D DGTD. Each element is independent with others, thus easily parallelizable. Because higher order modes will propagate in the parallel-plate pair, the spatial domain decomposition should be time-dependent. For domain decomposition criterion at time step t, the electromagnetic field distribution at the previous time step t is analyzed to identify the zeroth-order parallel mode domain. Compared with the classical static distance criterion, this new adaptive criterion makes the approximation error under control, thus enhancing the stability. The accuracy and flexibility of the hybrid method have been validated by comparison with commercial software. Its enhancement of efficiency and stability is also demonstrated.
机译:提出了一种混合的二维和三维离散不连续Garlerkin时域(DGTD)方法,用于离散平行板对中多个任意形状的抗垫的瞬态分析。在提出的混合方法中,仅存在零阶平行板模式的域由2-D DGTD建模,其余域由3-D DGTD建模。每个元素彼此独立,因此易于并行化。由于高阶模将在平行板对中传播,因此空间域分解应与时间有关。对于时间步t处的域分解标准,分析前一个时间步t处的电磁场分布,以识别零阶并行模式域。与经典的静态距离准则相比,该新的自适应准则使得近似误差在控制之下,从而提高了稳定性。通过与商业软件进行比较,已经验证了混合方法的准确性和灵活性。还证明了其效率和稳定性的增强。

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