DocumentCode :
3057922
Title :
Simulation and Evaluation of the Performance on Probabilistic Broadcasting in FSR (Fisheye State Routing) Routing Protocol Based on Random Mobility Model in MANET
Author :
Sivakumar, Nithya Rekha ; Chelliah, Chandrasekar
Author_Institution :
Dept. of Comput. Sci., Periyar Univ., Salem, India
fYear :
2012
fDate :
24-26 July 2012
Firstpage :
371
Lastpage :
376
Abstract :
Broadcasting in MANETs has traditionally based on flooding, which simply swamps the network with large number of rebroadcast messages in order to reach all network nodes. Although probabilistic flooding has been one of the earliest suggested schemes to broadcasting, there has not been so far any attempt to analyze its performance behavior in a MANET environment. In an effort to fill this gap, this paper investigates using extensive NS-2 simulations the effects of a number of important system parameters in a typical MANET, including node speed, pause time, and node density and packet reach ability on the performance of probabilistic flooding. The results reveal that most of these parameters have a critical impact on the reach ability and the number of saved rebroadcast messages achieved by probabilistic flooding on FSR (Fisheye State Routing) Protocol. The Random way Point Mobility model is selected as the mobile ad hoc network mobility model in NS2 Simulation.
Keywords :
mobile ad hoc networks; mobility management (mobile radio); probability; radio broadcasting; routing protocols; FSR routing protocol; MANET; extensive NS-2 simulations; fisheye state routing routing protocol; mobile ad hoc network mobility model; node density; node speed; packet reach ability; pause time; performance evaluation; probabilistic broadcasting; random way point mobility model; rebroadcast messages; Broadcasting; Computational modeling; Mobile ad hoc networks; Probabilistic logic; Routing; Routing protocols; Broadcasting; FSR (Fisheye State Routing) Protocol; Flooding probability; Grid FSR; MANET; NS2; Node Speed; Packet Reach ability; Pause time; Random way point mobility model; Saved Rebroadcasting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Intelligence, Communication Systems and Networks (CICSyN), 2012 Fourth International Conference on
Conference_Location :
Phuket
Print_ISBN :
978-1-4673-2640-7
Type :
conf
DOI :
10.1109/CICSyN.2012.74
Filename :
6274370
Link To Document :
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