引入csrr增强SIW带通滤波器的带宽

Junas Haidi, A. Munir
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摘要

本文讨论了利用互补分环谐振器(csrr)提高SIW带通滤波器带宽的方法。所提出的滤波器设计和部署在1.524mm厚的Rogers 4003C介电基片上,旨在以3.5 GHz的中心频率工作。为了获得宽带宽响应的滤波器,在SIW表面加入了14个csrr阵列,并以一定的配置方式排列以改善相互耦合。在获得反射系数值时,还利用了CSRR的加入提高了滤波器的性能。在优化设计结果的基础上,制作了含CSRR的SIW带通滤波器结构并进行了实验表征。测量结果表明,所实现的含csrs的SIW带通滤波器工作在3.38 GHz的中心频率,带宽为1.24 GHz,分数带宽$(f_{\text{BW}})$为36.7%。该成果比第二中心频率为4.29 GHz、带宽为0.48 GHz的常规成果宽11.2%。此外,在SIW带通滤波器中加载csrr可以使其在其通频带频率范围内的反射系数提高5 dB以上。
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Incorporation of CSRRs for Bandwidth Enhancement of SIW Bandpass Filter
This paper deals with the incorporation of complimentary split ring resonators (CSRRs) for enhancing bandwidth of SIW bandpass filter. The proposed filter which is designed and deployed on a 1.524mm thick Rogers 4003C dielectric substrate is intended to operate at the center frequency of 3.5 GHz. In order to attain the filter with a wide bandwidth response, an array of 14 CSRRs is incorporated on the SIW surface and arranged in a certain configuration to improve the mutual coupling. The incorporation of CSRR is also utilized to enhance the filter performance in gaining the reflection coefficient value. Based on the optimum design result, the configuration of SIW bandpass filter with CSRR incorporation is then fabricated and experimentally characterized. The measurement result shows that the realized SIW bandpass filter with CSRRs incorporation works at the center frequency of 3.38 GHz with the bandwidth of 1.24 GHz, or the fractional bandwidth $(f_{\text{BW}})$ of 36.7%. This achievement is wider than the conventional one which has the second center frequency of 4.29 GHz with the bandwidth of 0.48 GHz, or $f_{\text{BW}}$ of 11.2%. In addition, loading CSRRs into SIW bandpass filter can improve the reflection coefficient value more than 5 dB at its passband frequency range.
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