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Application of Theory of Characteristics Modes for Bandwidth Enhancement of a Miniaturized Minkowski Fractal Antenna

Reshmi Dhara, Mahesh Chandra Govil, Tapanendu Kundu

2021IETE Journal of Research11 citationsDOI

Abstract

This article presents a miniaturized modified Minkowski fractal antenna with enhanced linearly polarized impedance bandwidth (IBW) in the lower frequency region. Applying theory of characteristic modes (TCM) analysis on a second iterated modified Minkowski radiator without feeding structure, modal currents and their corresponding modal fields (radiation patterns) were determined to recognize symmetric dominant modes to be specifically excited to generate the required radiation pattern. It gave direction for choosing quarter-wave microwave line feeding as the feed of choice to excite the four desired modes at 2.7, 5.7, 5.9, and 8.7 GHz and providing excellent impedance matching to generate the very wide IBW. Measured results matched well with simulations done using Ansys HFSS 2020R1. Measured IBW is 9.7 GHz (160%), from 1.2 to 10.9 GHz, with center resonance frequency (frc) at 6.05 GHz, whereas simulated IBW is 9.4 GHz (162%), from 1.1 to 10.5 GHz with frc at 5.8 GHz. The antenna size is 36 × 34 × 1.6 mm3 (0.216λgL × 0.204λgL where at lower resonating frequency frL = 1.1 GHz, λgL is the guided wavelength) with 82.24% reduction in size. This antenna may be utilized for "L", "S" band and UWB wireless communication.

Topics & Concepts

HFSSPhysicsBandwidth (computing)OpticsAcousticsRadiation patternMicrowaveFractal antennaCenter frequencyWavelengthAntenna (radio)Antenna efficiencyMicrostrip antennaEngineeringTelecommunicationsBand-pass filterQuantum mechanicsAntenna Design and AnalysisMicrowave Engineering and WaveguidesMillimeter-Wave Propagation and Modeling
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