研究目的
To propose a compact three-dimensional frequency selective surface (FSS) with high selectivity based on the split square coaxial waveguide (SSCW) for dual polarisations.
研究成果
The proposed compact 3D bandpass FSS with high selectivity based on the SSCW achieves a stable response under large incident angles for both TE and TM polarisations. The design's compact unit cell contributes to good angular stability.
研究不足
The measured transmission loss is larger than the simulated one, and the measured bandwidth of the passband decreases slightly due to conductor losses, actual dielectric constant, measurement error, fabrication and assembly tolerances.
1:Experimental Design and Method Selection:
The design rationale is based on the split square coaxial waveguide (SSCW) to achieve a bandpass filtering response with high selectivity. The theoretical model involves electromagnetic coupling between two square slot resonances.
2:Sample Selection and Data Sources:
The unit cell consists of one parallel-plate waveguide (PPW) propagation path and one SSCW propagation path. Data is acquired through simulation and measurement.
3:List of Experimental Equipment and Materials:
ANSYS HFSS simulation software, F4B material (εr2 = 2.2, tanδ = 0.001), TP-2 composite material (εr1 = 7.5, tanδ = 0.003), conductive silver pulp.
4:2, tanδ = 001), TP-2 composite material (εr1 = 5, tanδ = 003), conductive silver pulp.
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The FSS prototype is built using three kinds of building parts, assembled to form PPW and SSCW paths, and measured using a free-space method with horn antennas.
5:Data Analysis Methods:
The transmission and reflection coefficients are analyzed to evaluate the filtering performance under oblique incidence for both TE and TM polarisations.
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