DocumentCode
3477310
Title
MMAC: a mobility-adaptive, collision-free MAC protocol for wireless sensor networks
Author
Ali, Muneeb ; Suleman, Tashfeen ; Uzmi, Zartash Afzal
Author_Institution
Comput. Sci. Dept., LUMS, Pakistan
fYear
2005
fDate
7-9 April 2005
Firstpage
401
Lastpage
407
Abstract
Mobility in wireless sensor networks poses unique challenges to the medium access control (MAC) protocol design. Previous MAC protocols for sensor networks assume static sensor nodes and focus on energy-efficiency. In this paper, we present a mobility-adaptive, collision-free medium access control protocol (MMAC) for mobile sensor networks. MMAC caters for both weak mobility (e.g., topology changes, node joins, and node failures) and strong mobility (e.g., concurrent node joins and failures, and physical mobility of nodes). MMAC is a scheduling-based protocol and thus it guarantees collision avoidance. MMAC allows nodes the transmission rights at particular time-slots based on the traffic information and mobility pattern of the nodes. Simulation results indicate that the performance of MMAC is equivalent to that of TRAMA in static sensor network environments. In sensor networks with mobile nodes or high network dynamics, MMAC outperforms existing MAC protocols, like TRAM A and S-MAC, in terms of energy-efficiency, delay, and packet delivery.
Keywords
access protocols; mobile radio; scheduling; telecommunication congestion control; telecommunication traffic; wireless sensor networks; MMAC; collision avoidance; medium access control; mobility-adaptive collision-free MAC protocol; scheduling-based protocol; traffic information; wireless mobile sensor network; Access protocols; Bandwidth; Computer science; Energy efficiency; Media Access Protocol; Programmable control; Sensor phenomena and characterization; Traffic control; Wireless application protocol; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Performance, Computing, and Communications Conference, 2005. IPCCC 2005. 24th IEEE International
ISSN
1097-2641
Print_ISBN
0-7803-8991-3
Type
conf
DOI
10.1109/PCCC.2005.1460597
Filename
1460597
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