DocumentCode :
1456779
Title :
Packet-level scheduling for implant communications using forward error correction in an erasure correction mode for reliable u-healthcare service
Author :
Lee, Ki-Dong ; Kim, Sang G. ; Yi, Byung K.
Author_Institution :
LG Electron. Mobile Res., San Diego, CA, USA
Volume :
13
Issue :
2
fYear :
2011
fDate :
4/1/2011 12:00:00 AM
Firstpage :
160
Lastpage :
166
Abstract :
In u-healthcare services based on wireless body sensor networks, reliable connection is very important as many types of information, including vital signals, are transmitted through the networks. The transmit power requirements are very stringent in the case of in-body networks for implant communication. Further- more, the wireless link in an in-body environment has a high degree of path loss (e.g., the path loss exponent is around 6.2 for deep tissue). Because of such inherently bad settings of the communication nodes, a multi-hop network topology is preferred in order to meet the transmit power requirements and to increase the battery lifetime of sensor nodes. This will ensure that the live body of a patient receiving the healthcare service has a reduced level of specific absorption ratio (SAR) when exposed to long-lasting radiation. We propose an efficient method for delivering delay-intolerant data packets over multiple hops. We consider forward error correction (FEC) in an erasure correction mode and develop a mathematical formulation for packet-level scheduling of delay-intolerant FEC packets over multiple hops. The proposed method can be used as a simple guideline for applications to setting up a topology for a medical body sensor network of each individual patient, which is connected to a remote server for u-healthcare service applications.
Keywords :
body sensor networks; forward error correction; prosthetics; scheduling; delay-intolerant data packets; erasure correction mode; forward error correction; implant communications; multihop network topology; packet-level scheduling; path loss; reliable u-healthcare service; specific absorption ratio; wireless body sensor networks; wireless link; Forward error correction; Job shop scheduling; Medical services; Power demand; Receivers; Wireless communication; Wireless sensor networks; Erasure correction mode; forward error correction (FEC); medical body area network (MBAN) applications; medical body sensor network; scheduling; u-healthcare service; wireless sensor network;
fLanguage :
English
Journal_Title :
Communications and Networks, Journal of
Publisher :
ieee
ISSN :
1229-2370
Type :
jour
DOI :
10.1109/JCN.2011.6157415
Filename :
6157415
Link To Document :
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