Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell

Multipath clusters in a wireless channel could act as additional channels for spatial multiplexing MIMO systems. However, identifying them in order to come up with better cluster channel models has been a hurdle due to how they are defined. This paper considers the identification of these clusters a...

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Main Authors: Materum, Lawrence Y., Takada, Jun-ichi, Ida, Ichirou, Oishi, Yasuyuki
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Published: Animo Repository 2009
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/8407
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-90652023-02-22T05:51:23Z Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell Materum, Lawrence Y. Takada, Jun-ichi Ida, Ichirou Oishi, Yasuyuki Multipath clusters in a wireless channel could act as additional channels for spatial multiplexing MIMO systems. However, identifying them in order to come up with better cluster channel models has been a hurdle due to how they are defined. This paper considers the identification of these clusters at the mobile station through a middle ground approach—combining a globally optimized automatic clustering approach and manual clustering of the physical scatterers. By including the scattering verification in the cluster identification, better insight into their behavior in wireless channels would be known, especially the physical realism and eventually a more satisfactorily accurate cluster channel model could be proposed. The results show that overlapping clusters make up the majority of the observed channel, which stems from automatic clustering, whereas only a few clusters have clear delineation of their dispersion. In addition, it is difficult to judge the physical realism of overlapping clusters. This further points to a need for the physical interpretation and verification of clustering results, which is an initial step taken in this paper. From the identification results, scattering mechanisms of the clusters are presented and also their selected first and second order statistics. 2009-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/8407 info:doi/10.1155/2009/804021 Faculty Research Work Animo Repository MIMO systems Broadband communication systems Signal Processing Systems and Communications
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic MIMO systems
Broadband communication systems
Signal Processing
Systems and Communications
spellingShingle MIMO systems
Broadband communication systems
Signal Processing
Systems and Communications
Materum, Lawrence Y.
Takada, Jun-ichi
Ida, Ichirou
Oishi, Yasuyuki
Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
description Multipath clusters in a wireless channel could act as additional channels for spatial multiplexing MIMO systems. However, identifying them in order to come up with better cluster channel models has been a hurdle due to how they are defined. This paper considers the identification of these clusters at the mobile station through a middle ground approach—combining a globally optimized automatic clustering approach and manual clustering of the physical scatterers. By including the scattering verification in the cluster identification, better insight into their behavior in wireless channels would be known, especially the physical realism and eventually a more satisfactorily accurate cluster channel model could be proposed. The results show that overlapping clusters make up the majority of the observed channel, which stems from automatic clustering, whereas only a few clusters have clear delineation of their dispersion. In addition, it is difficult to judge the physical realism of overlapping clusters. This further points to a need for the physical interpretation and verification of clustering results, which is an initial step taken in this paper. From the identification results, scattering mechanisms of the clusters are presented and also their selected first and second order statistics.
format text
author Materum, Lawrence Y.
Takada, Jun-ichi
Ida, Ichirou
Oishi, Yasuyuki
author_facet Materum, Lawrence Y.
Takada, Jun-ichi
Ida, Ichirou
Oishi, Yasuyuki
author_sort Materum, Lawrence Y.
title Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
title_short Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
title_full Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
title_fullStr Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
title_full_unstemmed Mobile station spatio-temporal multipath clustering of an estimated wideband MIMO double-directional channel of a small urban 4.5 GHz macrocell
title_sort mobile station spatio-temporal multipath clustering of an estimated wideband mimo double-directional channel of a small urban 4.5 ghz macrocell
publisher Animo Repository
publishDate 2009
url https://animorepository.dlsu.edu.ph/faculty_research/8407
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