Title :
Efficient Analysis, Design, and Filter Applications of EBG Waveguide With Periodic Resonant Loads
Author :
Goussetis, George ; Feresidis, Alexandros P. ; Kosmas, Panagiotis
Author_Institution :
Sch. of Eng. & Phys. Sci., Heriot-Watt Univ., Edinburgh
Abstract :
An efficient analysis and design of an electromagnetic-bandgap (EBG) waveguide with resonant loads is presented. Equivalent-circuit analysis is employed to demonstrate the differences between EBG waveguides with resonant and nonresonant loadings. As a result of the resonance, transmission zeros at finite frequencies emerge. The concept is demonstrated in E-plane waveguides. A generic fast and efficient formulation is presented, which starts from the generalized scattering matrix of the unit cell and derives the dispersion properties of the infinite structure. Both real and imaginary parts of the propagation constant are derived and discussed. The Floquet wavelength and impedance are also presented. The theoretical results are validated by comparison with simulations of a finite structure and experimental results. The application of the proposed EBG waveguide in the suppression of the spurious passband of a conventional E-plane filter is presented by experiment
Keywords :
S-matrix theory; equivalent circuits; filters; photonic band gap; poles and zeros; ridge waveguides; E-plane filters; E-plane waveguides; Floquet impedance; Floquet wavelength; electromagnetic bandgap waveguide; equivalent circuits; generalized scattering matrix; periodic resonant loads; propagation constant; transmission zeros; Electromagnetic analysis; Electromagnetic scattering; Electromagnetic waveguides; Filtering theory; Filters; Frequency; Loaded waveguides; Metamaterials; Periodic structures; Resonance; Electromagnetic bandgap (EBG); waveguide;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2006.883648