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Double-split labyrinth resonator with defective ground system for wide-band band-stop filter application

机译:双拆性迷宫谐振器,具有宽带带式滤波器应用的缺陷地系统

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A labyrinth resonator with defective ground structure (DGS) is introduced for designing a wide-band band-stop filter in order to adjust the resonating characteristics by varying the dimension of the structure to cover 2.75 – 10.30 GHz. A series of modified double-split ring resonators (DSRRs) are embedded into a 50Ω microstrip framework to attain a labyrinth structure. The Rogers RO- 3010, which has a succinct structure, is used as the substrate in the proposed wide-band band-stop filter. The realization of the architecture is explored both integrally and experimentally, and a complementary split ring resonator (CSRR) is introduced in the ground layer. The level of rejection of the filter in the stop-band region increases with the introduction of the CSRR. In addition, the filter is evaluated by applying the Nicolson-Ross-Weir approach at the filtering frequency. The effective electromagnetic parameters retrieved from the simulation of the S-parameters imply that the metamaterial structure exhibits negative refraction bands. With a promising design and wide range of double-negative characteristics, we propose a new type of filter which is suitable for a wide-band band-stop application.
机译:引入具有有缺陷的地面结构(DGS)的迷宫谐振器用于设计宽带带停止滤波器,以通过改变结构的尺寸来调节谐振特性,以覆盖2.75 - 10.30 GHz。一系列改进的双链环谐振器(DSRRS)嵌入到50Ω微带框架中以获得迷宫结构。具有简洁结构的rogers ro-3010用作所提出的宽带带停止滤波器中的基板。架构的实现是一体的,实验探索的,并且在地层中引入了互补的分开环谐振器(CSRR)。随着CSRR的引入,止动带区域中的滤波器的抑制水平增加。另外,通过在滤波频率下应用Nicolson-Ross-Weir方法来评估滤波器。从S参数模拟中检索的有效电磁参数意味着超材料结构表现出负折射带。具有有前途的设计和广泛的双负特性,我们提出了一种新型过滤器,适用于宽带带停止应用。

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