Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system

Mobile WiMAX is a broadband technology that is capable of delivering triple play services (voice, data, and video). However, mobility in mobile WiMAX system is still an issue when the mobile station (MS) moves and its connection is handed over between base stations (BSs). In the handover process, sc...

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Main Authors: Ben-Mubarak, Mohammed Awadh, Mohd Ali, Borhanuddin, Noordin, Nor Kamariah, Ismail, Alyani, Ng, Chee Kyun
Format: Article
Language:English
Published: Springer 2013
Online Access:http://psasir.upm.edu.my/id/eprint/28497/1/Mobile%20Station%20Movement%20Direction%20Prediction.pdf
http://psasir.upm.edu.my/id/eprint/28497/
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spelling my.upm.eprints.284972016-12-01T08:14:09Z http://psasir.upm.edu.my/id/eprint/28497/ Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system Ben-Mubarak, Mohammed Awadh Mohd Ali, Borhanuddin Noordin, Nor Kamariah Ismail, Alyani Ng, Chee Kyun Mobile WiMAX is a broadband technology that is capable of delivering triple play services (voice, data, and video). However, mobility in mobile WiMAX system is still an issue when the mobile station (MS) moves and its connection is handed over between base stations (BSs). In the handover process, scanning is one of the required phases to find the target BS. During the handover scanning process, the MS must synchronize with all the advertised neighbour BSs (nBSs) to select the best BS candidate for the incoming handover action. Without terminating the connection between the SBS and MS, the SBS will schedule the scanning intervals and sleep-intervals (also called interleaving interval) to MS for the handover scanning. However, during the scanning interval period, all the coming transmissions will be paused. Therefore, the redundant or unnecessary scanning of neighbouring BS cause delay and MAC overhead which may affect real-time applications. In this paper, the MS movement direction prediction (MMDP) based handover scanning scheme is introduced to overcome the mobile WiMAX handover scanning issue. It based on dividing the BS coverage area is into zones and sectors. According to the signal quality; there are three zones, no handover (No-HO), low handover (Low-HO) and high handover (High-HO) zones respectively and six sectors. In this scheme, only two BSs can become candidates; the two that the MS moves toward them will be chosen as the candidate for the handover scanning purpose. Hence, the handover scanning process repetition will be reduced with these two shortlisted BS candidates instead of scanning all nBSs. Thus, MMDP will reduce scanning delay and the number of exchange messages during the handover scanning comparing to the conventional scanning scheme. Although, the MMDP may need an extra computational time, the prediction and scanning process will be finished before the MS reach the High-HO zone, which mean the end-user’s running application will be affected. Simulation results show that the proposed MMDP scheme reduces the total handover scanning delay and scanning interval duration by 25 and 50 % respectively. Also, the size of scanning message is reduced, which leads to reduced signalling overhead. Springer 2013 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/28497/1/Mobile%20Station%20Movement%20Direction%20Prediction.pdf Ben-Mubarak, Mohammed Awadh and Mohd Ali, Borhanuddin and Noordin, Nor Kamariah and Ismail, Alyani and Ng, Chee Kyun (2013) Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system. Wireless Personal Communications, 73 (3). pp. 839-865. ISSN 0929-6212; ESSN: 1572-834X 10.1007/s11277-013-1220-y
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Mobile WiMAX is a broadband technology that is capable of delivering triple play services (voice, data, and video). However, mobility in mobile WiMAX system is still an issue when the mobile station (MS) moves and its connection is handed over between base stations (BSs). In the handover process, scanning is one of the required phases to find the target BS. During the handover scanning process, the MS must synchronize with all the advertised neighbour BSs (nBSs) to select the best BS candidate for the incoming handover action. Without terminating the connection between the SBS and MS, the SBS will schedule the scanning intervals and sleep-intervals (also called interleaving interval) to MS for the handover scanning. However, during the scanning interval period, all the coming transmissions will be paused. Therefore, the redundant or unnecessary scanning of neighbouring BS cause delay and MAC overhead which may affect real-time applications. In this paper, the MS movement direction prediction (MMDP) based handover scanning scheme is introduced to overcome the mobile WiMAX handover scanning issue. It based on dividing the BS coverage area is into zones and sectors. According to the signal quality; there are three zones, no handover (No-HO), low handover (Low-HO) and high handover (High-HO) zones respectively and six sectors. In this scheme, only two BSs can become candidates; the two that the MS moves toward them will be chosen as the candidate for the handover scanning purpose. Hence, the handover scanning process repetition will be reduced with these two shortlisted BS candidates instead of scanning all nBSs. Thus, MMDP will reduce scanning delay and the number of exchange messages during the handover scanning comparing to the conventional scanning scheme. Although, the MMDP may need an extra computational time, the prediction and scanning process will be finished before the MS reach the High-HO zone, which mean the end-user’s running application will be affected. Simulation results show that the proposed MMDP scheme reduces the total handover scanning delay and scanning interval duration by 25 and 50 % respectively. Also, the size of scanning message is reduced, which leads to reduced signalling overhead.
format Article
author Ben-Mubarak, Mohammed Awadh
Mohd Ali, Borhanuddin
Noordin, Nor Kamariah
Ismail, Alyani
Ng, Chee Kyun
spellingShingle Ben-Mubarak, Mohammed Awadh
Mohd Ali, Borhanuddin
Noordin, Nor Kamariah
Ismail, Alyani
Ng, Chee Kyun
Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
author_facet Ben-Mubarak, Mohammed Awadh
Mohd Ali, Borhanuddin
Noordin, Nor Kamariah
Ismail, Alyani
Ng, Chee Kyun
author_sort Ben-Mubarak, Mohammed Awadh
title Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
title_short Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
title_full Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
title_fullStr Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
title_full_unstemmed Mobile station movement direction prediction (MMDP) based handover scanning for mobile WiMAX system
title_sort mobile station movement direction prediction (mmdp) based handover scanning for mobile wimax system
publisher Springer
publishDate 2013
url http://psasir.upm.edu.my/id/eprint/28497/1/Mobile%20Station%20Movement%20Direction%20Prediction.pdf
http://psasir.upm.edu.my/id/eprint/28497/
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score 13.211869