Compact SRR based band stop filter for isolation in WLAN band in MIMO

Jamil, A. and Yusoff, M.Z. and Yahya, N. (2013) Compact SRR based band stop filter for isolation in WLAN band in MIMO. In: UNSPECIFIED.

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Abstract

The advent of metamaterials has enabled the researchers to design materials which are non-existent in nature. This exclusive property has opened new horizons for the RF and microwave engineers to customize materials that possess the unique properties of negative permittivity and negative permeability which otherwise cannot be realized using natural materials. When carefully designed, SRR on a substrate exhibit band reject characteristics. These SRR based bandstop filters are extremely beneficial in applications such as multiple input multiple output (MIMO) systems. In this paper two different SRR band stop filters are presented. The designed filters produce isolation responses, satisfying IEEE 802.11a/b/g WLAN band requirements i-e., (2.41 to 2.49 GHz, 5.15 to 5.35 GHz and 5.725 to 5.825 GHz). The first design is a doubly SRR to produce a band reject response from 1.86 GHz-2.65 GHz. The second designed filter is a closed loop SRR with T-shaped strips. It has been designed to provide high reflectivity and wide bandwidth rejection at 5 GHz band i.e., from 5 GHz-5.75 GHz. The simulation of SRR band stop filters has been carried out in CST microwave studio. © 2013 IEEE.

Item Type: Conference or Workshop Item (UNSPECIFIED)
Additional Information: cited By 5; Conference of 2013 11th IEEE Student Conference on Research and Development, SCOReD 2013 ; Conference Date: 16 December 2013 Through 17 December 2013; Conference Code:109913
Uncontrolled Keywords: IEEE Standards; Magnetic filters; Microwave filters; MIMO systems; Wireless local area networks (WLAN), Band-stop filters; Closed loops; CST microwave studio; Doubly SRR; Koch; Natural materials; Negative permeability; Negative permittivity, Notch filters
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 09 Nov 2023 15:52
Last Modified: 09 Nov 2023 15:52
URI: https://khub.utp.edu.my/scholars/id/eprint/3776

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