Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space

We analyzed the relation between two opposite effects of mutual coupling (MC), correlation reduction and gain loss, on the MIMO antenna performance in three-dimensional (3D) space. In the antenna level, those MC effects can be represented in terms of two main MIMO antenna parameters: the antenna cor...

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Main Authors: Satya Nandiwardhana, Jae-Young Chung
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8444000/
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spelling doaj-71b6f6a7855f4f1dadda5871a1c595d62021-03-29T21:11:52ZengIEEEIEEE Access2169-35362018-01-016470924710110.1109/ACCESS.2018.28664278444000Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional SpaceSatya Nandiwardhana0Jae-Young Chung1https://orcid.org/0000-0002-0982-6066Seoul National University of Science and Technology, Seoul, South KoreaSeoul National University of Science and Technology, Seoul, South KoreaWe analyzed the relation between two opposite effects of mutual coupling (MC), correlation reduction and gain loss, on the MIMO antenna performance in three-dimensional (3D) space. In the antenna level, those MC effects can be represented in terms of two main MIMO antenna parameters: the antenna correlation and radiation efficiency. The main contribution of this paper is the derivation of MC-related effects only on the antenna parameters, which then can be plugged into multiplexing efficiency, a realistic antenna-level MIMO performance metric, to evaluate the trade-off between two opposite MC effects. Uniform linear arrays with and without polarization diversity are used to analyze the MC effects, and to clarify the ambiguities of their contributions on the MIMO performance. The impacts of azimuth and elevation angular spreads to the MC and MIMO antenna performance are also investigated. Results show that the MC, contrary to common intuition, has a positive contribution to the MIMO performance relative to when MC is not considered in the system, especially at small antenna spacing. It implies that the correlation reduction dominates the gain loss from the MC effects. So, we can infer that the MC actually is not the reason for performance degradation in small spacing antenna arrays.https://ieeexplore.ieee.org/document/8444000/3-D channel modelMIMO antenna parametersMIMO antenna performancemultiplexing efficiency (ME)mutual coupling (MC)polarization diversity
collection DOAJ
language English
format Article
sources DOAJ
author Satya Nandiwardhana
Jae-Young Chung
spellingShingle Satya Nandiwardhana
Jae-Young Chung
Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
IEEE Access
3-D channel model
MIMO antenna parameters
MIMO antenna performance
multiplexing efficiency (ME)
mutual coupling (MC)
polarization diversity
author_facet Satya Nandiwardhana
Jae-Young Chung
author_sort Satya Nandiwardhana
title Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
title_short Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
title_full Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
title_fullStr Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
title_full_unstemmed Trade-Off Analysis of Mutual Coupling Effect on MIMO Antenna Multiplexing Efficiency in Three-Dimensional Space
title_sort trade-off analysis of mutual coupling effect on mimo antenna multiplexing efficiency in three-dimensional space
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description We analyzed the relation between two opposite effects of mutual coupling (MC), correlation reduction and gain loss, on the MIMO antenna performance in three-dimensional (3D) space. In the antenna level, those MC effects can be represented in terms of two main MIMO antenna parameters: the antenna correlation and radiation efficiency. The main contribution of this paper is the derivation of MC-related effects only on the antenna parameters, which then can be plugged into multiplexing efficiency, a realistic antenna-level MIMO performance metric, to evaluate the trade-off between two opposite MC effects. Uniform linear arrays with and without polarization diversity are used to analyze the MC effects, and to clarify the ambiguities of their contributions on the MIMO performance. The impacts of azimuth and elevation angular spreads to the MC and MIMO antenna performance are also investigated. Results show that the MC, contrary to common intuition, has a positive contribution to the MIMO performance relative to when MC is not considered in the system, especially at small antenna spacing. It implies that the correlation reduction dominates the gain loss from the MC effects. So, we can infer that the MC actually is not the reason for performance degradation in small spacing antenna arrays.
topic 3-D channel model
MIMO antenna parameters
MIMO antenna performance
multiplexing efficiency (ME)
mutual coupling (MC)
polarization diversity
url https://ieeexplore.ieee.org/document/8444000/
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AT jaeyoungchung tradeoffanalysisofmutualcouplingeffectonmimoantennamultiplexingefficiencyinthreedimensionalspace
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