Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems

In the latest cellular networks, data services like SNS and UCC can create asymmetric packet generation rates over the downlink and uplink channels. This asymmetry can lead to a downlink-uplink asymmetric channel condition being experienced by cell edge users. This paper proposes a handoff scheme to...

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Main Authors: Sunghyun Cho, Ji-Su Kim, Jae-Hyun Kim
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:The Scientific World Journal
Online Access:http://dx.doi.org/10.1155/2013/241483
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spelling doaj-88a531603f794cbd88115c0d16d9d5162020-11-25T00:21:14ZengHindawi LimitedThe Scientific World Journal1537-744X2013-01-01201310.1155/2013/241483241483Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular SystemsSunghyun Cho0Ji-Su Kim1Jae-Hyun Kim2Department of Computer Science and Engineering, Hanyang University, 55 Daehak-ro, Sangrok-gu, Ansan, Gyeonggi-do 426-791, Republic of KoreaDepartment of Electrical and Computer Engineering, Ajou University, San 5 Woncheon-dong, Yeongtong-gu, Suwon, Gyeonggi-do 443-749, Republic of KoreaDepartment of Electrical and Computer Engineering, Ajou University, San 5 Woncheon-dong, Yeongtong-gu, Suwon, Gyeonggi-do 443-749, Republic of KoreaIn the latest cellular networks, data services like SNS and UCC can create asymmetric packet generation rates over the downlink and uplink channels. This asymmetry can lead to a downlink-uplink asymmetric channel condition being experienced by cell edge users. This paper proposes a handoff scheme to cope effectively with downlink-uplink asymmetric channels. The proposed handoff scheme exploits the uplink channel quality as well as the downlink channel quality to determine the appropriate timing and direction of handoff. We first introduce downlink and uplink channel models that consider the intercell interference, to verify the downlink-uplink channel asymmetry. Based on these results, we propose an enhanced handoff scheme that exploits both the uplink and downlink channel qualities to reduce the handoff-call dropping probability and the service interruption time. The simulation results show that the proposed handoff scheme reduces the handoff-call dropping probability about 30% and increases the satisfaction of the service interruption time requirement about 7% under high-offered load, compared to conventional mobile-assisted handoff. Especially, the proposed handoff scheme is more efficient when the uplink QoS requirement is much stricter than the downlink QoS requirement or uplink channel quality is worse than downlink channel quality.http://dx.doi.org/10.1155/2013/241483
collection DOAJ
language English
format Article
sources DOAJ
author Sunghyun Cho
Ji-Su Kim
Jae-Hyun Kim
spellingShingle Sunghyun Cho
Ji-Su Kim
Jae-Hyun Kim
Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
The Scientific World Journal
author_facet Sunghyun Cho
Ji-Su Kim
Jae-Hyun Kim
author_sort Sunghyun Cho
title Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
title_short Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
title_full Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
title_fullStr Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
title_full_unstemmed Enhanced Handoff Scheme for Downlink-Uplink Asymmetric Channels in Cellular Systems
title_sort enhanced handoff scheme for downlink-uplink asymmetric channels in cellular systems
publisher Hindawi Limited
series The Scientific World Journal
issn 1537-744X
publishDate 2013-01-01
description In the latest cellular networks, data services like SNS and UCC can create asymmetric packet generation rates over the downlink and uplink channels. This asymmetry can lead to a downlink-uplink asymmetric channel condition being experienced by cell edge users. This paper proposes a handoff scheme to cope effectively with downlink-uplink asymmetric channels. The proposed handoff scheme exploits the uplink channel quality as well as the downlink channel quality to determine the appropriate timing and direction of handoff. We first introduce downlink and uplink channel models that consider the intercell interference, to verify the downlink-uplink channel asymmetry. Based on these results, we propose an enhanced handoff scheme that exploits both the uplink and downlink channel qualities to reduce the handoff-call dropping probability and the service interruption time. The simulation results show that the proposed handoff scheme reduces the handoff-call dropping probability about 30% and increases the satisfaction of the service interruption time requirement about 7% under high-offered load, compared to conventional mobile-assisted handoff. Especially, the proposed handoff scheme is more efficient when the uplink QoS requirement is much stricter than the downlink QoS requirement or uplink channel quality is worse than downlink channel quality.
url http://dx.doi.org/10.1155/2013/241483
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