基于CSRR的射频通信三带通滤波器设计

S. Gagare, Dolly Thankachan
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引用次数: 2

摘要

目前,多波段微波通信系统已广泛应用于无线通信领域。在大多数采用传统微带带通滤波器的射频接收机中,存在谐波和杂散频率等噪声干扰问题。同时为了减小尺寸和噪声干扰问题,多波段可重构带通滤波器适用于高频无线通信[4]。单衬底可用于多波段通信系统。由于频率重构技术,在多个频带频率操作之间的切换成为可能。由于多频带频率采用单一衬底,滤波器的尺寸也减小了。本研究提出利用互补裂环谐振器(CSRR)微带结构设计三带通滤波器进行频率重构。采用方形CSRR结构改善了通带特性,减小了滤波器的尺寸。本文的目的是介绍一种三带通滤波器的设计,其工作频率为2.45 GHz,用于ISM, 3.3GHz用于Wi-MAX, 5.5GHz用于WLAN应用,用作可重构带通滤波器。采用方形互补裂环谐振器(CSRR)结构。条带宽度、长度、谐振腔间隙等设计参数均以半波长为基础。利用仿真软件HFSS对该滤波器进行了设计和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of CSRR Based Tri Band Pass Filter for RF Communication
Now a days multiband microwave communication system is used in wireless applications. In most of the RF receiver using conventional type micro strip band pass filter, the noise interference problem due to harmonics and spurious frequencies are occurred. Also to reduce the size and noise interference problem, multiband reconfigurable band pass filter is suitable for high frequency wireless communication [4]. The single substrate can be used in a multi band communication system. The switching between multiple band frequency operations is possible due to frequency reconfiguration technique. Due to single substrate for multiband frequency, size of the filter is also reduces. This research work presents a use of complementary split ring resonator (CSRR) micro strip structure for design of tri band pass filter for frequency reconfigurations. The pass band characteristics are improved by using square type CSRR structure also it reduces the size of filter. The aim of this paper is to present the design of triple band pass filter operated on frequencies at 2.45 GHz for ISM, 3.3GHz for Wi-MAX and 5.5GHz for WLAN applications used as a reconfigurable band pass filter. The square type complementary split ring resonator (CSRR) structure is used. The design parameters like strip width, length and resonator gap are on the basis of half wavelength. The simulation software, HFSS is used for design and analysis of this filter.
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