A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration

Spatially adaptive antenna array (SAA) is an electronically scanned antenna array with capability of changing its physical location. This new capability allows SAA to control the wireless channel environment to increase link capacity without employing an increased number of antenna elements. Compact...

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Main Authors: Jonas Mendoza, Murat Karabacak, Huseyin Arslan, Gokhan Mumcu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9212394/
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spelling doaj-73bafd08ac9e4ff487f18a6960ed644b2021-03-30T04:23:22ZengIEEEIEEE Access2169-35362020-01-01818289818290710.1109/ACCESS.2020.30287959212394A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based ReconfigurationJonas Mendoza0https://orcid.org/0000-0002-1631-0308Murat Karabacak1https://orcid.org/0000-0002-9160-367XHuseyin Arslan2https://orcid.org/0000-0001-9474-7372Gokhan Mumcu3https://orcid.org/0000-0002-3275-4865Center for Wireless and Microwave Information Systems, University of South Florida, Tampa, FL, USACenter for Wireless and Microwave Information Systems, University of South Florida, Tampa, FL, USACenter for Wireless and Microwave Information Systems, University of South Florida, Tampa, FL, USACenter for Wireless and Microwave Information Systems, University of South Florida, Tampa, FL, USASpatially adaptive antenna array (SAA) is an electronically scanned antenna array with capability of changing its physical location. This new capability allows SAA to control the wireless channel environment to increase link capacity without employing an increased number of antenna elements. Compact and cost-effective implementation of SAA requires a strategically designed RF feed network that can allow the radiating antenna elements to be repositioned while other RF and digital electronics remain stationary. This manuscript introduces a novel RF feed network and demonstrates the first experimental verification of SAA by using microfluidic based reconfiguration. The presented microfluidically reconfigurable SAA (MRSA) exhibits the best possible compact form - a total footprint that is approximately equal to the spatial adaptation range. MRSA operates at 28 GHz with 45 mm ($4.2~\lambda _{0}$ ) spatial adaptation capability. Evaluating MRSA in communication systems using its measured realized gain patterns show that link level performance of the wireless channel is improved by 24% from 8.5 bps/Hz to 10.5 bps/Hz. Additionally, spectral efficiency is improved by 100% with 5 dB improvement in average signal to interference ratio.https://ieeexplore.ieee.org/document/9212394/Beam steeringchannel capacitydiversity methodsmicrofluidicsmillimeter wave communicationphased arrays
collection DOAJ
language English
format Article
sources DOAJ
author Jonas Mendoza
Murat Karabacak
Huseyin Arslan
Gokhan Mumcu
spellingShingle Jonas Mendoza
Murat Karabacak
Huseyin Arslan
Gokhan Mumcu
A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
IEEE Access
Beam steering
channel capacity
diversity methods
microfluidics
millimeter wave communication
phased arrays
author_facet Jonas Mendoza
Murat Karabacak
Huseyin Arslan
Gokhan Mumcu
author_sort Jonas Mendoza
title A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
title_short A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
title_full A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
title_fullStr A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
title_full_unstemmed A Spatially Adaptive Antenna Array for Mm-Wave Wireless Channel Control With Microfluidics Based Reconfiguration
title_sort spatially adaptive antenna array for mm-wave wireless channel control with microfluidics based reconfiguration
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Spatially adaptive antenna array (SAA) is an electronically scanned antenna array with capability of changing its physical location. This new capability allows SAA to control the wireless channel environment to increase link capacity without employing an increased number of antenna elements. Compact and cost-effective implementation of SAA requires a strategically designed RF feed network that can allow the radiating antenna elements to be repositioned while other RF and digital electronics remain stationary. This manuscript introduces a novel RF feed network and demonstrates the first experimental verification of SAA by using microfluidic based reconfiguration. The presented microfluidically reconfigurable SAA (MRSA) exhibits the best possible compact form - a total footprint that is approximately equal to the spatial adaptation range. MRSA operates at 28 GHz with 45 mm ($4.2~\lambda _{0}$ ) spatial adaptation capability. Evaluating MRSA in communication systems using its measured realized gain patterns show that link level performance of the wireless channel is improved by 24% from 8.5 bps/Hz to 10.5 bps/Hz. Additionally, spectral efficiency is improved by 100% with 5 dB improvement in average signal to interference ratio.
topic Beam steering
channel capacity
diversity methods
microfluidics
millimeter wave communication
phased arrays
url https://ieeexplore.ieee.org/document/9212394/
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