Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications

Virtual drive testing (VDT) has gained great interest from both industry and academia, owing to its promise to replay field trials in a controllable laboratory condition. VDT is especially appealing for vehicle communication scenarios, where actual field trials can be difficult to carry out in pract...

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Main Authors: Wei Fan, Lassi Hentila, Fengchun Zhang, Pekka Kyosti, Gert Frolund Pedersen
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8269321/
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spelling doaj-48de778e569f4cbc87faa121cd3b790f2021-03-29T20:35:57ZengIEEEIEEE Access2169-35362018-01-0167829783810.1109/ACCESS.2018.27979728269321Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle CommunicationsWei Fan0https://orcid.org/0000-0002-9835-4485Lassi Hentila1Fengchun Zhang2Pekka Kyosti3https://orcid.org/0000-0003-3533-9234Gert Frolund Pedersen4Department of Electronic Systems, Antennas, Propagation, and Millimeter-wave Systems Section, Aalborg University, Aalborg, DenmarkKeysight Technologies Finland Oy, Oulu, FinlandDepartment of Electronic Systems, Antennas, Propagation, and Millimeter-wave Systems Section, Aalborg University, Aalborg, DenmarkKeysight Technologies Finland Oy, Oulu, FinlandDepartment of Electronic Systems, Antennas, Propagation, and Millimeter-wave Systems Section, Aalborg University, Aalborg, DenmarkVirtual drive testing (VDT) has gained great interest from both industry and academia, owing to its promise to replay field trials in a controllable laboratory condition. VDT is especially appealing for vehicle communication scenarios, where actual field trials can be difficult to carry out in practice. Research work on VDT of adaptive antenna systems in dynamic propagation scenarios has been limited, mainly due to high VDT setup cost and lack of efficient dynamic propagation channel models. In this paper, we propose to jointly emulate adaptive antennas (i.e. beamformers) and radio channels in the radio channel emulator to reduce the VDT setup cost. A simple dynamic propagation channel framework, which is based on linear interpolation of propagation parameters of the stationary channel models, is also presented. We further experimentally evaluate the beamformer capability (i.e. beam tracking and null steering) in dynamic line-of-sight (LOS) and non-LOS scenarios in the proposed cost-effective conducted VDT setups. The simulation and measurement results have demonstrated the effectiveness of the beam tracking and nulling steering algorithms in dynamic propagation conditions in the presence of interfering signal. The proposed setup and dynamic channel modeling framework are valuable for the VDT of adaptive antenna systems.https://ieeexplore.ieee.org/document/8269321/Adaptive arraysradiowave propagationmultipath channelstest equipmentintelligent vehiclestime-varying channels
collection DOAJ
language English
format Article
sources DOAJ
author Wei Fan
Lassi Hentila
Fengchun Zhang
Pekka Kyosti
Gert Frolund Pedersen
spellingShingle Wei Fan
Lassi Hentila
Fengchun Zhang
Pekka Kyosti
Gert Frolund Pedersen
Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
IEEE Access
Adaptive arrays
radiowave propagation
multipath channels
test equipment
intelligent vehicles
time-varying channels
author_facet Wei Fan
Lassi Hentila
Fengchun Zhang
Pekka Kyosti
Gert Frolund Pedersen
author_sort Wei Fan
title Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
title_short Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
title_full Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
title_fullStr Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
title_full_unstemmed Virtual Drive Testing of Adaptive Antenna Systems in Dynamic Propagation Scenarios for Vehicle Communications
title_sort virtual drive testing of adaptive antenna systems in dynamic propagation scenarios for vehicle communications
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description Virtual drive testing (VDT) has gained great interest from both industry and academia, owing to its promise to replay field trials in a controllable laboratory condition. VDT is especially appealing for vehicle communication scenarios, where actual field trials can be difficult to carry out in practice. Research work on VDT of adaptive antenna systems in dynamic propagation scenarios has been limited, mainly due to high VDT setup cost and lack of efficient dynamic propagation channel models. In this paper, we propose to jointly emulate adaptive antennas (i.e. beamformers) and radio channels in the radio channel emulator to reduce the VDT setup cost. A simple dynamic propagation channel framework, which is based on linear interpolation of propagation parameters of the stationary channel models, is also presented. We further experimentally evaluate the beamformer capability (i.e. beam tracking and null steering) in dynamic line-of-sight (LOS) and non-LOS scenarios in the proposed cost-effective conducted VDT setups. The simulation and measurement results have demonstrated the effectiveness of the beam tracking and nulling steering algorithms in dynamic propagation conditions in the presence of interfering signal. The proposed setup and dynamic channel modeling framework are valuable for the VDT of adaptive antenna systems.
topic Adaptive arrays
radiowave propagation
multipath channels
test equipment
intelligent vehicles
time-varying channels
url https://ieeexplore.ieee.org/document/8269321/
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