DocumentCode
1156944
Title
On the power efficiency of cooperative broadcast in dense wireless networks
Author
Sirkeci-Mergen, Birsen ; Scaglione, Anna
Volume
25
Issue
2
fYear
2007
fDate
2/1/2007 12:00:00 AM
Firstpage
497
Lastpage
507
Abstract
A fundamental problem in large scale wireless networks is the energy efficient broadcast of source messages to the whole network. The energy consumption increases as the network size grows, and the optimization of broadcast efficiency becomes more important. In this paper, we study the optimal power allocation problem for cooperative broadcast in dense large-scale networks. In the considered cooperation protocol, a single source initiates the transmission and the rest of the nodes retransmit the source message if they have decoded it reliably. Each node is allocated an-orthogonal channel and the nodes improve their receive signal-to-noise ratio (SNR), hence the energy efficiency, by maximal-ratio combining the receptions of the same packet from different transmitters. We assume that the decoding of the source message is correct as long as the receive SNR exceeds a predetermined threshold. Under the optimal cooperative broadcasting, the transmission order (i.e., the schedule) and the transmission powers of the source and the relays are designed so that every node receives the source message reliably and the total power consumption is minimized. In general, finding the best scheduling in cooperative broadcast is known to be an NP-complete problem. In this paper, we show that the optimal scheduling problem can be solved for dense networks, which we approximate as a continuum of nodes. Under the continuum model, we derive the optimal scheduling and the optimal power density. Furthermore, we propose low-complexity, distributed and power efficient broadcasting schemes and compare their power consumptions with those-of-a traditional noncooperative multihop transmission.
Keywords
broadcasting; channel allocation; decoding; radio networks; radio transmitters; scheduling; cooperative broadcasting; decoding; energy consumption; energy efficiency; large scale wireless network; maximal-ratio combining; orthogonal channel allocation; power allocation problem; scheduling problem; source message; transmitters; Broadcasting; Decoding; Diversity reception; Energy consumption; Energy efficiency; Large-scale systems; Optimal scheduling; Protocols; Signal to noise ratio; Wireless networks;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2007.070223
Filename
4107966
Link To Document