DocumentCode
823471
Title
Hop count optimal position-based packet routing algorithms for ad hoc wireless networks with a realistic physical Layer
Author
Kuruvila, Johnson ; Nayak, Amiya ; Stojmenovic, Ivan
Author_Institution
Sch. of Inf. Technol. & Eng., Univ. of Ottawa, Ont., Canada
Volume
23
Issue
6
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
1267
Lastpage
1275
Abstract
Existing routing and broadcasting protocols for ad hoc networks assume an ideal physical layer model. We apply the log-normal shadow fading model to represent a realistic physical layer and use the probability p(x) for receiving a packet successfully as a function of distance x between two nodes. We define the transmission radius R as the distance at which p(R)=0.5. We propose a medium access control layer protocol, where receiver node acknowledges packet to sender node u times, where u*p(x)≈1. We derived an approximation for p(x) to reduce computation time. It can be used as the weight in the optimal shortest hop count routing scheme. We then study the optimal packet forwarding distance to minimize the hop count, and show that it is approximately 0.73R (for power attenuation degree 2). A hop count optimal, greedy, localized routing algorithm [referred as ideal hop count routing (IHCR)] for ad hoc wireless networks is then presented. We present another algorithm called expected progress routing with acknowledgment (referred as aEPR) for ad hoc wireless networks. Two variants of aEPR algorithm, namely, aEPR-1 and aEPR-u are also presented. Next, we propose projection progress scheme, and its two variants, 1-Projection and u-Projection. Iterative versions of aEPR and projection progress attempt to improve their performance. We then propose tR-greedy routing scheme, where packet is forwarded to neighbor closest to destination, among neighbors that are within distance tR. All described schemes are implemented, and their performances are evaluated and compared.
Keywords
access protocols; ad hoc networks; probability; radio receivers; routing protocols; wireless sensor networks; aEPR-1; aEPR-u; ad hoc network; broadcasting protocol; expected progress routing; log-normal shadow fading model; medium access control layer protocol; optimal shortest hop count routing scheme; probability; routing protocol; sensor network; tR-greedy routing scheme; Access protocols; Ad hoc networks; Attenuation; Broadcasting; Fading; Iterative algorithms; Media Access Protocol; Physical layer; Routing protocols; Wireless networks; Ad hoc wireless networks; greedy routing; physical layer; sensor networks;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2005.845634
Filename
1435519
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