Browse > Article

A Study on an Efficient Routing Scheme for using a priority scheme in Wireless Sensor Networks  

Won, Dae-Ho (School of Electronic Engineering, Kumoh National Inst. of Tech.)
Yang, Yeon-Mo (School of Electronic Engineering, Kumoh National Inst. of Tech.)
Publication Information
Abstract
Wireless Sensor Networks(WSNs) have shown a lot of good outcomes in providing a various functions depending on industrial expectations by deploying ad-hoc networking with helps of light loaded and battery powered sensor nodes. In particular, it is strongly requested to develop an algorithm of cross-layer control between 2-layer and 3-layer to deriver the sensing data from the end node to the sink node on time. In this paper, based on the above observation we have proposed an IEEE802.15.4 based self priority routing scheme under UC Berkely TinyOS platform. The proposed beacon based priority routing (BPR) algorithm scheme utilizes beacon periods in sending message with embedding the high priority data and thus provides high quality of service(QoS) in the given criteria. The performance measures are the packet Throughput, delivery, latency, total energy consumption. Simulation results under TinyOS Simulator(TOSSIM) have shown the proposed scheme outcome the conventional Ad hoc On-Demand Distance Vector(AODV) Routing.
Keywords
Quality of Service(QoS); WPANs; Beacon; WSNs; TinyOS; TOSSIM; IEEE802.15.4;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 전호인, "WiBEEM:U-City 핵심 서비스 구현을 위한 최적의 USN 아키텍쳐", 한국통신학회지, 23권, 12호, pp17-36, 2006.
2 김동성, 이정일, "실시간 혼합 트래픽 전송을 위한 산업용 IEEE 802.15.4 망의 체계적 전송 기법", 전자공학회논문지, 제45권, 6호, 18-26쪽, 2008년.
3 (주) 한백전자 기술연구소, "유비쿼터스 센서 네트워크 시스템: Zigbex를 이용한", 도서출판ITC, p60-73, 2006.
4 J.Zheng, M.Lee, " A Comprehensive performance study of IEEE802.15.4", Sensor Network Operations, IEEE Press, Wiley Interscience, Chapter 4, pp.218-237, 2006.
5 P.Baronti, P.Pillai, V.Chook, S.Chessa, A.Gotta, Y.Hu, "Wireless sensor networks: A survey on the state of the art and the 802.15.4 and ZigBee standards", Computer Communications In Wired/Wireless Internet Communications, Vol.30, No.7, pp1655-1695, 2007.
6 V.P.Rao, D.Marandin, "Adaptive Backoff Exponent Algorithm for Zigbee(IEEE802.15.4)", Lecture Notes in Computer Science, Vol4003, pp501-516, 2006.
7 김명유, 김기형, "IEEE 802.15.4에서 트래픽 상황을 고려한 CSMA-CA 백오프 알고리즘", 대한전자공학회 학술대회, 1366-1367쪽, 2009년.
8 곽원근, 이재용, "IEEE802.15.4 WPAN에서의 Cyclic Contention-Free Access 기법", 한국통신학회논문지, Vol.32, No.7, p455-462, 2007.
9 ZigBee Alliance, ZigBee Specification, 2008.
10 A.Koubaa, M.Alves, E.Tovar, "GTS Allocation Analysis in IEEE 802.15.4 for Real-Time Wireless Sensor Networks", IPP-Hurray Technical report TR-060404, 2006.
11 W.Qiu, E.Skafidas, P.Hao, "Enhanced tree routing for wireless sensor networks", Ad Hoc Networks,No.7,p638-650, 2009.
12 C.Perkins, E.Royer, "Ad-hoc On-Demand Distance Vector Routing", Proceedings of Second IEEE Workshop Mobile Computing Systems and Applications, p90-100, 1999.
13 P.Levis, N.Lee, "TOSSIM: A Simulator for TinyOS Networks", 2003.
14 J.Nielsen, "Zipf Curves and Website Popularity", http://www.useit.com/alertbox/zipf.html.
15 D.Gay, P.Levis, R.Behren, M.Welsh, E.Brewer, and D.Culler, "The nesC Language: A Holistic Approach to Networked Embedded Systems", PLDI, 2003.
16 Yang and S. Kim, "An improved self routing scheme by using parent-child relationship and beacon-only period for WSNs",IJICT, Vol. 2, pp. 279-301, 2010.   DOI   ScienceOn
17 IEEE P802.15.4c, Wireless Medium Access Control and Physical Layer specification for Rate Wireless Personal Area Networks, 2009.
18 H. Perros, "Computer Simulation Techniques: The definitive introduction!", North Carolina State University, http://www.csc.ncsu.edu/faculty/perros, 2003.