DocumentCode
1002370
Title
MH-TRACE: multihop time reservation using adaptive control for energy efficiency
Author
Tavli, Bulent ; Heinzelman, Wendi B.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Rochester, NY, USA
Volume
22
Issue
5
fYear
2004
fDate
6/1/2004 12:00:00 AM
Firstpage
942
Lastpage
953
Abstract
In this paper, we propose multihop time reservation using adaptive control for energy efficiency (MH-TRACE), which is a medium access control (MAC) protocol that combines advantageous features of fully centralized and fully distributed networks for energy-efficient real-time packet broadcasting in a multihop radio network. We introduce a novel clustering algorithm that dynamically organizes the network into two-hop clusters. MH-TRACE clusters are just for coordinating channel access and minimizing interference; thus, ordinary nodes are not static members of any cluster. Time is organized into cyclic superframes, which consist of several time frames, to support reservation-based periodic channel access for real-time traffic. Each clusterhead chooses the frame with least interference based on its own measurements for the operation of its cluster. Energy dissipation for receiving unwanted or collided data packets or for waiting in idle mode is avoided through the use of information summarization packets sent prior to the data transmissions by the source nodes. Through the use of transmission schedules within each cluster, managed by the clusterheads, intracluster data collisions are completely eliminated and intercluster collisions are minimized. We investigated MH-TRACE through extensive simulations and theoretical analysis. Our results show that MH-TRACE outperforms existing distributed MAC protocols like IEEE 802.11 and sensor MAC, in terms of energy efficiency and throughput, approaching the theoretical maximum throughput and theoretical minimum energy dissipation.
Keywords
access protocols; ad hoc networks; adaptive control; data communication; multi-access systems; packet radio networks; pattern clustering; quality of service; telecommunication traffic; MAC protocol; MH-TRACE clusters; QoS; ad hoc network architecture; adaptive control; clusterheads; clustering algorithm; collided data packets; cyclic superframes; data transmissions; energy efficiency; energy-efficient real-time packet broadcasting; fully centralized networks; fully distributed networks; information summarization packets; intercluster collisions; intracluster data collisions; medium access control protocol; minimum energy dissipation; multiaccess communication; multihop radio network; multihop time reservation; quality-of-service; real-time traffic; reservation-based periodic channel access; throughput; time frames; transmission schedules; two-hop clusters; Access protocols; Adaptive control; Energy dissipation; Energy efficiency; Interference; Media Access Protocol; Radio broadcasting; Radio network; Spread spectrum communication; Throughput; Energy efficiency; QoS; multiaccess communication; protocols; quality-of-service; real-time systems; speech communication;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2004.826932
Filename
1303762
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