DocumentCode
3250719
Title
AMAC: Traffic-Adaptive Sensor Network MAC Protocol through Variable Duty-Cycle Operations
Author
Sang Hoon Lee ; Joon Ho Park ; Choi, Lynn
Author_Institution
Korea Univ. Seoul, Seoul
fYear
2007
fDate
24-28 June 2007
Firstpage
3259
Lastpage
3264
Abstract
Sensor network MAC protocols usually employ periodic sleep and wakeup, achieving low duty-cycle to save energy and to increase the lifetime of battery-powered sensor devices. However, existing protocols require all the sensor nodes to operate on the same static schedule, waking up all the nodes at the same fixed interval periodically. This paper proposes a new media access control protocol called AMAC that can achieve significant energy savings by dynamically changing the schedule of each node depending on the traffic. In AMAC, each node can adjust the duration of the periodic interval as well as the duration of the active period depending on the traffic. Thus, busy nodes can operate with a high duty-cycle while idle nodes can operate with a low duty-cycle at the same time, achieving both low-energy and high-performance. The results of our detailed simulations confirm that AMAC can reduce the average energy consumption by a factor of up to 6.8 compared to an existing fixed duty-cycle MAC protocol while it can also improve the network performance for burst traffic patterns.
Keywords
access protocols; telecommunication power supplies; telecommunication traffic; wireless sensor networks; average energy consumption; battery-powered sensor devices; burst traffic patterns; energy saving; media access control protocol; traffic-adaptive sensor network MAC protocol; variable duty-cycle operations; Access protocols; Communication system traffic control; Computer networks; Delay; Energy consumption; Media Access Protocol; Peer to peer computing; Sleep; Telecommunication traffic; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 2007. ICC '07. IEEE International Conference on
Conference_Location
Glasgow
Print_ISBN
1-4244-0353-7
Type
conf
DOI
10.1109/ICC.2007.540
Filename
4289211
Link To Document