DocumentCode
2332281
Title
Green Wave: Latency and Capacity-Efficient Sleep Scheduling for Wireless Networks
Author
Guha, Saikat ; Chau, Chi-Kin ; Basu, Prithwish
Author_Institution
Raytheon BBN Technol., Cambridge, MA, USA
fYear
2010
fDate
14-19 March 2010
Firstpage
1
Lastpage
9
Abstract
While scheduling the nodes in a wireless network to sleep periodically can save energy, it also incurs higher latency and lower throughput. We consider the problem of designing optimal sleep schedules in wireless networks, and show that finding sleep schedules that can minimize the latency over a given subset of source-destination pairs is NP-hard. We also derive a latency lower bound given by d + O(1/p) for any sleep schedule with a required active rate (i.e., the fraction of active slots of each node) p, and the shortest path length d. We offer a novel solution to optimal sleep scheduling using green-wave sleep scheduling (GWSS), inspired by coordinated traffic lights, which is shown to meet our latency lower bound (hence is latency-optimal) for topologies such as the line, grid, ring, torus and tree networks, under light traffic. For high traffic loads, we propose non-interfering GWSS, which can achieve the maximum throughput scaling law given by T(n,p) = ¿(p/¿n) bits/sec on a grid network of size n, with a latency scaling law D(n,p) = O(¿n) + O(1/p). Finally, we extend GWSS to a random network with n Poisson-distributed nodes, for which we show an achievable throughput scaling law of T(n,p) = ¿(p/¿(n log n)) bits/sec and a corresponding latency scaling law D(n,p) = O(¿(n/log n)) + O(1/p); hence meeting the well-known Gupta-Kumar achievable throughput rate ¿(1/¿(n log n)) when p ¿ 1.
Keywords
radio networks; scheduling; Gupta-Kumar achievable throughput rate; Poisson-distributed nodes; capacity-efficient sleep scheduling; coordinated traffic lights; green wave; green-wave sleep scheduling; wireless networks; Delay; Energy consumption; Network topology; Peer to peer computing; Processor scheduling; Sleep; Telecommunication traffic; Throughput; USA Councils; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM, 2010 Proceedings IEEE
Conference_Location
San Diego, CA
ISSN
0743-166X
Print_ISBN
978-1-4244-5836-3
Type
conf
DOI
10.1109/INFCOM.2010.5462011
Filename
5462011
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