Title :
ESPRIT-Based Directional MAC Protocol for Mobile Ad Hoc Networks
Author :
Kun Liu ; Hamouda, Walaa ; Youssef, Amira
Author_Institution :
Concordia Univ., Montreal
Abstract :
The use of directional antennas in mobile ad hoc networks has shown to offer large potential throughput gains relative to omnidirectional antennas. When used in ad hoc networks, directional medium-access-control (DMAC) protocols usually require all nodes, or part of nodes, to be aware of their exact locations. This location information is typically provided using a global positioning system (GPS) which, typically, requires a line of sight in order to avoid the large signal attenuation and hence is not suitable for indoor applications. Moreover, as the inaccuracy associated with the GPS position estimation increases, the system throughput dramatically degrades. In this paper, we propose an efficient two-channel two-mode DMAC protocol. Our protocol employs two frequency division multiplexed channels: channel one used for omni-mode transmission and channel two for directional mode transmission. Signal parameter estimation via the rotational invariance technique (ESPRIT) is used for direction-of-arrival (DOA) estimation. By avoiding the reliance on GPS for obtaining the position information, our protocol is suitable for both outdoor and indoor applications. Under different operating conditions and channel models, our simulation results clearly show the throughput improvement achieved using the proposed protocol relative to the IEEE 802.11.
Keywords :
access protocols; ad hoc networks; direction-of-arrival estimation; directive antennas; frequency division multiplexing; mobile radio; DOA estimation; ESPRIT-based directional MAC protocol; GPS; direction-of-arrival estimation; directional antennas; directional mode transmission; frequency division multiplexed channels; mobile ad hoc networks; omnimode transmission; rotational invariance technique; signal parameter estimation; two-channel two-mode DMAC protocol; Ad hoc networks; Attenuation; Degradation; Directional antennas; Directive antennas; Global Positioning System; Media Access Protocol; Mobile ad hoc networks; Mobile antennas; Throughput;
Conference_Titel :
Communications, 2007. ICC '07. IEEE International Conference on
Conference_Location :
Glasgow
Print_ISBN :
1-4244-0353-7
DOI :
10.1109/ICC.2007.602