DocumentCode :
3605621
Title :
Epsilon Negative CPW-Fed Zeroth-Order Resonating Antenna With Backed Ground Plane for Extended Bandwidth and Miniaturization
Author :
Sharma, Sameer Kumar ; Gupta, Ashish ; Chaudhary, Raghvendra Kumar
Author_Institution :
Dept. of Electron. Eng., Indian Sch. of Mines, Dhanbad, India
Volume :
63
Issue :
11
fYear :
2015
Firstpage :
5197
Lastpage :
5203
Abstract :
A compact CPW-fed metamaterial (MTM)-inspired zeroth-order resonating (ZOR) antenna is presented with backed ground plane. Such MTM antenna consists of thin conducting line and a bow-tie shaped patch connected to CPW feed. The proposed structure shows compact size with radiating element dimensions of 0.095λo × 0.042λo × 0.013λo by introducing ground plane at bottom. As an advantage, resonant frequency is shifted toward left which corresponds to 57.9% miniaturization area with respect to the proposed antenna without backed plane (resonating at 3.7 GHz). The proposed MTM antenna exhibits zeroth-order resonance (ZOR) at 2.4 GHz and has an impedance bandwidth (S11 <; -10 dB.) of 25.4%. The proposed structure shows good radiation characteristics with simulated absolute gain of 1.59 dBi and simulated radiation efficiency of 91.5% throughout the operating bandwidth. Now for extending the bandwidth and shifting the resonant frequency to be operated in WiMAX band (3.5-3.57 GHz), electromagnetic band gap (EBG) structures are loaded in upper ground plane. This antenna shows an impedance bandwidth of 54.2% and resonates at 3.3 GHz. The radiation patterns are consistent throughout the working band. The prototype structures have been fabricated and experimentally validated. The designed antennas are suitable for use in LTE, WLAN, and WiMAX (2.5/3.5 GHz).
Keywords :
Long Term Evolution; WiMax; antenna feeds; antenna radiation patterns; coplanar waveguides; metamaterial antennas; microwave antennas; photonic band gap; wireless LAN; EBG structure; LTE; MTM-inspired ZOR antenna; WLAN; WiMAX; backed ground plane; bow-tie shaped patch; compact CPW-fed metamaterial; efficiency 91.5 percent; electromagnetic band gap structure; epsilon negative CPW-fed zeroth-order resonating antenna; extended bandwidth; frequency 2.4 GHz; frequency 3.3 GHz; frequency 3.5 GHz to 3.57 GHz; frequency 3.7 GHz; impedance bandwidth; radiation characteristic; radiation pattern; resonant frequency; Antenna measurements; Bandwidth; Loaded antennas; Loading; Metamaterials; Periodic structures; Epsilon negative transmission line (ENG-TL); electromagnetic band gap (EBG); extended bandwidth; wideband antenna; zeroth order resonator; zeroth-order resonator;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2015.2477521
Filename :
7254157
Link To Document :
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