Design and performance analysis of MIMO antennas for 5G and future communications
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Abstract
MIMO (Multiple-Input, Multiple-Output) technique is considered a
newlinecrucial and promising aspect of future wireless communication systems. The
newlineusage of MIMO technology significantly improves the data rate, transfer
newlinespeed, channel capacity, as well as throughput of systems for wireless
newlinecommunication. MIMO antennas use multiple antennas at both the
newlinetransmission and reception ends. As technology advances, next wireless
newlinecommunication services will need enhanced data speeds. Developing an
newlineantenna for a MIMO system that minimizes mutual interaction among its
newlinecomponents to enhance transmission speeds and capacity, while facing
newlinevarious constraints. The objective is to create a miniature planar MIMO
newlineantenna supporting 5G and next generation wireless communications that
newlinedemonstrates superior return loss. The main challenge in planar MIMO
newlineantenna development is mutual coupling, which may be alleviated using
newlinetactics including as decoupling networks, defective ground structures,
newlineparasitic elements, and neutralization methods.
newlineThe primary performance metrics of the antenna system encompass
newlineS-parameters, current distribution, gain, radiating efficiency, radiation
newlinecharacteristics, and MIMO diversity evaluation metrics including Envelope
newlineCorrelation Coefficient (ECC), Total Active Reflection Coefficient (TARC),
newlineDiversity Gain (DG), and Channel Capacity Loss (CCL).
newline