DocumentCode
2362087
Title
Compression schemes for in-body and on-body UWB sensor networks
Author
Floor, Pål Anders ; Balasingham, Ilangko ; Ramstad, Tor A. ; Meurville, Eric ; Peisino, Michela
Author_Institution
Interventional Center, Oslo Univ. Hosp., Oslo, Norway
fYear
2010
fDate
7-10 Nov. 2010
Firstpage
1
Lastpage
5
Abstract
Recently, there has been an increasing interest in applying wireless sensor networks for health status monitoring both on and within the human body. Low power consumption is crucial in such applications, especially for implanted devices. UWB transmission is one way of making low power transmission possible. A further reduction in power consumption can be achieved through efficient signal compression schemes. Since signals resulting from the measurements of physical phenomena are correlated compression prior to transmission can reduce the bit-rate an thus the power consumption significantly. In this paper a compression schemes for a 2-node sensor network is studied. Differential pulse code modulation is applied for removal of temporal correlation and distributed quantization is used for exploitation of inter-sensor correlation. An example on optimization of encoders and decoders based on the statistical properties of an ECG signal is performed. Significant compression is shown to be achieved at low complexity.
Keywords
body sensor networks; differential pulse code modulation; error statistics; ultra wideband communication; BER; ECG signal; UWB transmission; bit-rate reduction; differential pulse code modulation; distributed quantization; health status monitoring; in-body UWB sensor networks; intersensor correlation; low power consumption; on-body UWB sensor networks; signal compression schemes; statistical properties; temporal correlation removal; wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Sciences in Biomedical and Communication Technologies (ISABEL), 2010 3rd International Symposium on
Conference_Location
Rome
Print_ISBN
978-1-4244-8131-6
Type
conf
DOI
10.1109/ISABEL.2010.5702843
Filename
5702843
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