A novel efficient power‐saving MAC protocol for multi‐hop MANETs

Ren‐Hung Hwang, Chiung‐Ying Wang, Chi‐Jen Wu, Guan‐Nan Chen · International Journal of Communication Systems · 2011

SUMMARY Following recent advances in the performance ofad hocnetworks, the limited life of batteries in mobile devices poses a bottleneck in their development. Consequently, how to minimize power consumption in the Medium Access Control (MAC) layer ofad hocnetworks is an essential issue. The power‐saving mode (PSM) of IEEE 802.11 involves the Timing Synchronization Function to reduce power consumption for single‐hop mobilead hocnetworks (MANETs). However, the IEEE 802.11 PSM is known to result in unnecessary energy consumption as well as the problems of overheating and back‐off time delay. Hence, this study presents an efficient power‐saving MAC protocol, calledp‐MANET, based on a Multi‐hop Time Synchronization Protocol, which involves a hibernation mechanism, a beacon inhibition mechanism, and a low‐latency next‐hop selection mechanism for general‐purpose multi‐hop MANETs. The main purposes of thep‐MANET protocol are to reduce significantly the power consumption and the transmission latency. In the hibernation mechanism, eachp‐MANET node needs only to wake up during one out of everyNbeacon interval, whereNis the number of beacon intervals in a cycle. Thus, efficient power consumption is achieved. Furthermore, a beacon inhibition mechanism is proposed to prevent the beacon storm problem that is caused by synchronization and neighbor discovery messages. Finally, the low‐latency next‐hop selection mechanism is designed to yield low transmission latency. Eachp‐MANET node is aware of the active beacon intervals of its neighbors by using a hash function, such that it can easily forward packets to a neighbor in active mode or with the least remaining time to wake up. As a consequence, upper‐layer routing protocols can cooperate withp‐MANET to select the next‐hop neighbor with the best forwarding delay. To verify the proposed design and demonstrate the favorable performance of the proposedp‐MANET, we present the theoretical analysis related top‐MANET and also perform experimental simulations. The numerical results show thatp‐MANET reduces power consumption and routing latency and performs well in extending lifetime with a small neighbor discovery time. Copyright © 2011 John Wiley & Sons, Ltd.

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