DocumentCode
950707
Title
FlexiTP: A Flexible-Schedule-Based TDMA Protocol for Fault-Tolerant and Energy-Efficient Wireless Sensor Networks
Author
Lee, Winnie Louis ; Datta, Amitava ; Cardell-Oliver, Rachel
Author_Institution
Sch. of Comput. Sci. & Software Eng., Western Australia Univ., Crawley, WA
Volume
19
Issue
6
fYear
2008
fDate
6/1/2008 12:00:00 AM
Firstpage
851
Lastpage
864
Abstract
FlexiTP is a novel TDMA protocol that offers a synchronized and loose slot structure. Nodes in the network can build, modify, or extend their scheduled number of slots during execution, based on their local information. Nodes wake up for their scheduled slots; otherwise, they switch into power-saving sleep mode. This flexible schedule allows FlexiTP to be strongly fault tolerant and highly energy efficient. FlexiTP is scalable for a large number of nodes because its depth-first-search schedule minimizes buffering, and it allows communication slots to be reused by nodes outside each other´s interference range. Hence, the overall scheme of FlexiTP provides end-to-end guarantees on data delivery (throughput, fair access, and robust self-healing) while also respecting the severe energy and memory constraints of wireless sensor networks. Simulations in ns-2 show that FlexiTP ensures energy efficiency and is robust to network dynamics (faults such as dropped packets and nodes joining or leaving the network) under various network configurations (network topology and network density), providing an efficient solution for data-gathering applications. Furthermore, under high contention, FlexiTP outperforms 2-MAC in terms of energy efficiency and network performance.
Keywords
fault tolerance; minimisation; routing protocols; scheduling; synchronisation; telecommunication network reliability; time division multiple access; tree searching; wireless sensor networks; FlexiTP protocol; buffering minimization; depth-first-search schedule; energy-efficient wireless sensor networks; fault-tolerant wireless sensor networks; flexible-schedule-based TDMA protocol; loose slot structure; network configurations; network dynamics; network routing; synchronized slot structure; Distributed networks; Wireless systems;
fLanguage
English
Journal_Title
Parallel and Distributed Systems, IEEE Transactions on
Publisher
ieee
ISSN
1045-9219
Type
jour
DOI
10.1109/TPDS.2007.70774
Filename
4359454
Link To Document