Title :
Calculation and analysis of ACPW and UWB ACPW-slotline transition
Author :
Peng, Chen ; Xiaoming, Li ; Shaojun, Fang ; Shiqiang, Fu
Author_Institution :
Inf. Sci. & Technol. Coll., Dalian Maritime Univ., Dalian, China
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.
Keywords :
S-parameters; coplanar waveguides; finite difference time-domain analysis; ultra wideband technology; FDTD method; Mur-PML absorbing boundary condition; S-parameters; UWB ACPW-slotline transition; XFDTD formulation; asymmetrical coplanar waveguide; dispersion characteristic; maximum power transfer; open circuit conditions; slotline hollow patch; Boundary conditions; Coplanar waveguides; Dispersion; Finite difference methods; Slotline; Time domain analysis; ACPW; ACPW-Slotline; FDTD; Mur-PML;
Conference_Titel :
Signal Processing Systems (ICSPS), 2010 2nd International Conference on
Conference_Location :
Dalian
Print_ISBN :
978-1-4244-6892-8
Electronic_ISBN :
978-1-4244-6893-5
DOI :
10.1109/ICSPS.2010.5555748