DocumentCode :
109069
Title :
Power Optimized DSTBC Assisted DMF Relaying in Wireless Sensor Networks with Redundant Super Nodes
Author :
Razi, Abolfazl ; Afghah, Fatemeh ; Abedi, Ali
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Maine, Orono, ME, USA
Volume :
12
Issue :
2
fYear :
2013
fDate :
Feb-13
Firstpage :
636
Lastpage :
645
Abstract :
In conventional two-tiered Wireless Sensor Networks (WSN), sensors in each cluster transmit observed data to a fusion center via an intermediate supernode. This structure is vulnerable to supernode failure. A double supernode system model with a new coding scheme is proposed to monitor a binary data source. A Distributed Joint Source Channel Code (D-JSCC) is proposed for sensors inside a cluster that provides two advantages of low complexity transmitters and scalability to a large number of sensors. In order to setup a robust communication channel from sensors to the data fusion center, Distributed Space-Time Block Coding (D-STBC) is employed at two supernodes prior to relaying that results in additional diversity gain. DeModulate and Forward (DMF) relaying mode is chosen to enable packet reformatting at the supernodes, which is not possible in widely used Amplify and Forward (AF) mode. The optimum power allocation for the two-hop multiple DMF relaying is calculated to minimize the system Bit Error Rate (BER). An upper bound is derived for the system end-to-end BER by analyzing a basic decoder operation over the system model. The simulation results validate this upper bound and also demonstrate considerable improvement in the system BER for the proposed coding scheme.
Keywords :
combined source-channel coding; decoding; diversity reception; error statistics; sensor fusion; space-time block codes; telecommunication network reliability; wireless sensor networks; AF mode; D-JSCC; amplify-and-forward mode; binary data source; conventional two-tiered WSN; data fusion center; decoder operation; demodulate-and-forward relaying mode; distributed joint source channel code; distributed space-time block coding; diversity gain; double-supernode system model; fusion center; intermediate supernode; low-complexity transmitters; optimum power allocation; packet reformatting; power-optimized DSTBC-assisted DMF relaying; redundant super nodes; robust communication channel; supernode failure; system BER minimization; system bit error rate minimization; system end-to-end BER; two-hop multiple-DMF relaying; wireless sensor networks; Base stations; Bit error rate; Decoding; Encoding; Noise; Relays; Wireless sensor networks; Distributed coding; demodulate and forward relaying; distributed space-time block codes; power optimization;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2012.121712.111968
Filename :
6399489
Link To Document :
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