Title :
Sleep Scheduling for Geographic Routing in Duty-Cycled Mobile Sensor Networks
Author :
Chunsheng Zhu ; Yang, L.T. ; Lei Shu ; Leung, Victor C. M. ; Rodrigues, Joel J. P. C. ; Lei Wang
Author_Institution :
Dept. of Comput. Sci., St. Francis Xavier Univ., Antigonish, NS, Canada
Abstract :
Recently, the research focus on geographic routing, a promising routing scheme in wireless sensor networks (WSNs), is shifting toward duty-cycled WSNs in which sensors are sleep scheduled to reduce energy consumption. However, except the connected-k neighborhood (CKN) sleep scheduling algorithm and the geographic routing oriented sleep scheduling (GSS) algorithm, nearly all research work about geographic routing in duty-cycled WSNs has focused on the geographic forwarding mechanism; further, most of the existing work has ignored the fact that sensors can be mobile. In this paper, we focus on sleep scheduling for geographic routing in duty-cycled WSNs with mobile sensors and propose two geographic-distance-based connected-k neighborhood (GCKN) sleep scheduling algorithms. The first one is the geographic-distance-based connected-kneighborhood for first path (GCKNF) sleep scheduling algorithm. The second one is the geographic-distance-based connected-kneighborhood for all paths (GCKNA) sleep scheduling algorithm. By theoretical analysis and simulations, we show that when there are mobile sensors, geographic routing can achieve much shorter average lengths for the first transmission path explored in WSNs employing GCKNF sleep scheduling and all transmission paths searched in WSNs employing GCKNA sleep scheduling compared with those in WSNs employing CKN and GSS sleep scheduling.
Keywords :
energy consumption; scheduling; telecommunication network routing; wireless sensor networks; GCKN all paths sleep scheduling algorithm; GCKN first path sleep scheduling algorithm; GCKN sleep scheduling algorithms; GSS algorithm; connected-k neighborhood sleep scheduling algorithm; duty-cycled WSN; duty-cycled mobile sensor networks; energy consumption; geographic forwarding mechanism; geographic routing oriented sleep scheduling algorithm; geographic-distance-based connected-k neighborhood; mobile sensors; wireless sensor networks; Algorithm design and analysis; Educational institutions; Job shop scheduling; Mobile communication; Routing; Scheduling algorithms; Wireless sensor networks; Connected- $k$ neighborhood (CKN); duty-cycle; geographic routing; mobility; wireless sensor networks (WSNs);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2014.2311390