Calculation and analysis of ACPW and UWB ACPW-slotline transition

Chen Peng, L. Xiaoming, Fang Shaojun, Fu Shiqiang
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引用次数: 1

Abstract

The paper calculated the dispersion characteristic of asymmetrical coplanar waveguide (ACPW) using FDTD method. The results of theoretical calculation show very good agreement with XFDTD formulation and experimental data over a wide frequency range. And the time of the FDTD calculation is about one fourth of XFDTD formulation. On this basis, a novel approach for designing a UWB ACPW to slotline transition is presented. A slotline hollow patch creates open circuit conditions on one arm of the ACPW and resonates the transition so that maximum power transfer may occur. The S-parameters of ACPW-Slotline transition was calculated using FDTD method based on Mur-PML absorbing boundary condition. The results agree well with available theoretical and experimental data over a wide frequency range. It is shown that ACPW is easier to connect with slotline in circuit structure and impendence match compare with symmetrical CPW.
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ACPW和超宽带ACPW-槽线转换的计算与分析
本文用时域有限差分法计算了非对称共面波导的色散特性。在较宽的频率范围内,理论计算结果与XFDTD公式和实验数据吻合良好。时域有限差分法的计算时间约为XFDTD公式的四分之一。在此基础上,提出了一种设计超宽带ACPW向槽线过渡的新方法。槽线空心贴片在ACPW的一只臂上产生开路条件,并引起过渡共振,以便发生最大功率转移。采用基于mr - pml吸收边界条件的FDTD方法计算了acpw -槽线过渡的s参数。在较宽的频率范围内,计算结果与现有的理论和实验数据吻合良好。结果表明,与对称CPW相比,ACPW在电路结构和阻抗匹配方面更易于与槽线连接。
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