Certain investigations on performance analysis of dual mode antenna for wireless applications
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Abstract
Wireless communication has achieved tremendous advancements in
newlinethe past few years, enabling more than one wireless system to be integrated into
newlineone device. There has been an increase in congestion in the electromagnetic
newlinespectrum as a result of this revolution. There are many wireless communication
newlinesystems that require smaller antennas that can handle multiple frequencies. The
newlineRF front-end elements must be designed with multiple antenna elements due to
newlineefforts to reduce the antenna size. To overcome these difficulties, antennas that
newlinecan operate on multiple bands, multimode, low profile, low cost, that easily
newlineintegrate with portable devices must be developed. In modern wireless
newlinecommunication systems, dual-mode antennas play a significant role. As
newlinewireless communication standards have changed, the need for
newlinemultifunctionality has increased. The reconfigurable antenna has attracted
newlinesignificant attention in this context because cognitive radio and other future
newlinewireless communication systems require reconfigurable antennas. In order to
newlinesatisfy the requirement for multiple functions, reconfigurable antennas can be
newlineconfigured to change operating frequency, radiation pattern, and polarization.
newlineIt is possible to achieve reconfigurability by inserting active microwave
newlinecomponents in the antenna structure, such as PIN diodes and varactor diodes.
newlineThe use of switching elements in dual-mode antennas allows them to change
newlinefrom narrowband to wideband functionality. It enables effective use of
newlinespectrum, reduces the complexity and costs of systems, and supports various
newlinecommunication standards.
newlineAdditionally, reconfigurable antennas can mitigate multipath fading,
newlineconserve energy, improve security, and mitigate signal quality degradation.
newline