DocumentCode :
1456763
Title :
Exploring the feasibility of differentiating IEEE 802.15.4 networks to support health-care systems
Author :
Shin, Youn-Soon ; Lee, Kang-Woo ; Ahn, Jong-Suk
Author_Institution :
Inf. Commun. Eng. Dept., Univ. of Dongguk, Seoul, South Korea
Volume :
13
Issue :
2
fYear :
2011
fDate :
4/1/2011 12:00:00 AM
Firstpage :
132
Lastpage :
141
Abstract :
IEEE 802.15.4 networks are a feasible platform candidate for connecting all health-care-related equipment dispersed across a hospital room to collect critical time-sensitive data about patient health state, such as the heart rate and blood pressure. To meet the quality of service requirements of health-care systems, this paper proposes a multi-priority queue system that differentiates between various types of frames. The effect of the proposed system on the average delay and throughput is explored herein. By employing different contention window parameters, as in IEEE 802.11e, this multi-queue system prioritizes frames on the basis of priority classes. Performance under both saturated and unsaturated traffic conditions was evaluated using a novel analytical model that comprehensively integrates two legacy models for 802.15.4 and 802.11e. To improve the accuracy, our model also accommodates the transmission retries and deferment algorithms that significantly affect the performance of IEEE 802.15.4. The multi-queue scheme is predicted to separate the average delay and throughput of two different classes by up to 48.4 % and 46 %, respectively, without wasting bandwidth. These outcomes imply that the multi-queue system should be employed in health-care systems for prompt allocation of synchronous channels and faster delivery of urgent information. The simulation results validate these model´s predictions with a maximum deviation of 7.6%.
Keywords :
Zigbee; biomedical communication; health care; hospitals; quality of service; queueing theory; IEEE 802.15.4 networks; blood pressure; critical time-sensitive data; deferment algorithm; health care equipment; health care system; heart rate; hospital room; multipriority queue system; multiqueue system; patient health state; synchronous channels; unsaturated traffic condition; Analytical models; Brain modeling; Delay; Equations; IEEE 802.15 Standards; Mathematical model; Quality of service; Analytical model; IEEE 802.15.4; health-care systems; multiple queues; quality of service (QoS) service;
fLanguage :
English
Journal_Title :
Communications and Networks, Journal of
Publisher :
ieee
ISSN :
1229-2370
Type :
jour
DOI :
10.1109/JCN.2011.6157412
Filename :
6157412
Link To Document :
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