Stacked Patch Antenna With Dual-Polarization and Low Mutual Coupling for Massive MIMO

Massive multiple input and multiple output (MIMO) has attracted significant interests in both academia and industry. It has been considered as one of most promising technologies for 5G wireless systems. The large-scale antenna array for base stations naturally becomes the key to deploy the Massive M...

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Veröffentlicht in:IEEE transactions on antennas and propagation 2016-10, Vol.64 (10), p.4544-4549
Hauptverfasser: Yue Gao, Runbo Ma, Yapeng Wang, Qianyun Zhang, Parini, Clive
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container_issue 10
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container_title IEEE transactions on antennas and propagation
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creator Yue Gao
Runbo Ma
Yapeng Wang
Qianyun Zhang
Parini, Clive
description Massive multiple input and multiple output (MIMO) has attracted significant interests in both academia and industry. It has been considered as one of most promising technologies for 5G wireless systems. The large-scale antenna array for base stations naturally becomes the key to deploy the Massive MIMO technologies. In this communication, we present a dual-polarized antenna array with 144 ports for Massive MIMO operating at 3.7 GHz. The proposed array consists of 18 low profile subarrays. Each subarray consists of four single units. Each single antenna unit consists of one vertically polarized port and one horizontally polarized port connected to power splitters, which serve as a feeding network. A stacked patch design is used to construct the single unit with the feeding network, which gives higher gain and lower mutual coupling within the size of a conversional dual-port patch antenna. Simulation results of the proposed single antenna unit, sub-array, and Massive MIMO array are verified by measurement.
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subjects Antenna array
Antenna arrays
Antenna measurements
Couplings
dual-polarization
feeding network
Massive multiple input and multiple output (MIMO)
MIMO
Mutual coupling
Ports (Computers)
subarray
title Stacked Patch Antenna With Dual-Polarization and Low Mutual Coupling for Massive MIMO
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