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首页> 外文期刊>Microwave and optical technology letters >COMPARISON OF ELECTROMAGNETIC BAND GAP AND SPLIT-RING RESONATOR MICROSTRIP LINES AS STOP BAND STRUCTURES
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COMPARISON OF ELECTROMAGNETIC BAND GAP AND SPLIT-RING RESONATOR MICROSTRIP LINES AS STOP BAND STRUCTURES

机译:电磁带隙和分裂环谐振器微带线作为阻带结构的比较

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In this paper, microstrip lines magnetically coupled to split-ring resonators (SRRs) are compared to electromagnetic bandgap (EBG) microstrip lines in terms of their stop-band performance and dimensions. In both types of transmission lines, signal propagation is inhibited in a certain frequency band, For EBG microstrip lines, the central frequency of such a forbidden band is determined by the period of the structure, whereas in SRR-based microstrip lines the position of the frequency gap depends on the quasi-static resonant frequency of the rings. The main relevant contribution of this paper is to provide a tuning procedure to control the gap width in SRR microstrip lines, and to show that by using SRRs, device dimensions are much smaller than those required by EBGs in order to obtain similar stop-band performance. This has been demonstrated by full-wave electromagnetic simulations and experimentally verified from the characterization of two fabricated microstrip lines: one with rectangular SRRs etched on the upper substrate side, and the other with a periodic perturbation of strip width. For similar rejection and 1-GHz gap width centered at 4.5 GHz, it has been found that the SRR microstrip line is five times shorter. In addition, no ripple is appreciable in the allowed band for the SRR-based structure, whereas due to dispersion, certain mismatch is expected in the EBG prototype. Due to the high-frequency selectivity, controllable gap width, and small dimensions, it is believed that SRR coupled to planar transmission lines can have an actual impact on the design of stop-band filters compatible with planar technology, and can be an alternative to present solutions based on distributed approaches or EBG.
机译:在本文中,将磁耦合至裂环谐振器(SRR)的微带线与电磁带隙(EBG)微带线的阻带性能和尺寸进行了比较。在这两种类型的传输线中,信号传播都在某个频带内受到抑制。对于EBG微带线,这种禁带的中心频率由结构的周期确定,而在基于SRR的微带线中,传输带的位置频率间隙取决于环的准静态谐振频率。本文的主要相关贡献在于提供一种调节程序,以控制SRR微带线中的间隙宽度,并表明通过使用SRR,器件尺寸要比EBG所需的器件尺寸小得多,以获得类似的阻带性能。 。这已通过全波电磁仿真得到证明,并通过两条微带线的特性进行了实验验证:一条微带线刻有矩形SRR,刻蚀在上基板一侧,另一条带周期性扰动了条带宽度。对于类似的抑制和以4.5 GHz为中心的1 GHz间隙宽度,已经发现SRR微带线短了五倍。此外,对于基于SRR的结构,在允许的频带内没有明显的波纹,而由于色散,在EBG原型中可能会出现某些失配。由于高频选择性,可控制的间隙宽度和小尺寸,相信与平面传输线耦合的SRR可能会对与平面技术兼容的阻带滤波器的设计产生实际影响,并且可以替代提供基于分布式方法或EBG的解决方案。

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