DocumentCode :
72201
Title :
Energy-Efficient Relaying via Store-Carry and Forward within the Cell
Author :
Kolios, Panayiotis ; Friderikos, Vasilis ; Papadaki, Katerina
Author_Institution :
Center for Telecommun. Res., King´s Coll. London, London, UK
Volume :
13
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
202
Lastpage :
215
Abstract :
In this paper, store-carry and forward (SCF) decision policies for relaying within the cell are developed. The key motivation of SCF relaying stems from the fact that energy consumption levels can be dramatically reduced by capitalizing on the inherent mobility of nodes and the elasticity of Internet applications. More specifically, we show how the actual mobility of relay nodes can be incorporated as an additional resource in the system to achieve savings in the required communication energy levels. To this end, we provide a mathematical programming formulation on the aforementioned problem and find optimal routing and scheduling policies to achieve maximum energy savings. By investigating structural properties of the proposed mathematical program we show that optimal solutions can be computed efficiently in time. The tradeoffs between energy and delay in the system are meticulously studied and Pareto efficient curves are derived. Numerical investigations show that the achievable energy gains by judiciously storing and carrying information from mobile relays can grow well above 70 percent for the macrocell scenario when compared to a baseline multihop wireless relaying scheme that uses shortest path routes to the base station.
Keywords :
Internet; energy conservation; mathematical programming; relay networks (telecommunication); scheduling; telecommunication network routing; telecommunication switching; Internet applications; Pareto efficient curves; SCF decision policies; communication energy levels; energy-efficient relaying; inherent mobility; mathematical programming; multihop wireless relaying scheme; optimal routing; relay nodes; scheduling policies; store-carry and forward decision policies; Computer architecture; Delay; Energy consumption; Microprocessors; Mobile communication; Relays; Vehicles; Computer architecture; Delay; Energy consumption; Microprocessors; Mobile communication; Relays; Vehicles; delay tolerance; green cellular networking; network flows; store-carry and forward relaying; wireless routing;
fLanguage :
English
Journal_Title :
Mobile Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1233
Type :
jour
DOI :
10.1109/TMC.2012.233
Filename :
6357190
Link To Document :
بازگشت