International Journal of Research in Engineering and Applied Sciences
  • Year: 2016
  • Volume: 6
  • Issue: 5

“T-MANET Method for identification of appropriate parameters for best performance to design MANET in particular scenario”

  • Author:
  • Gouri M. Patil1, Ajay H. Kumar2, A. D. Shaligram3
  • Total Page Count: 12
  • Page Number: 96 to 107

1Department of Computer Science, Savitribai Phule Pune University, Pune-411 007, India

2Jayawant Technical Campus-Jayawant Institute of Business Studies, Pune-411 033, India

3Department of Electronic Science, Savitribai Phule University, Pune-411 007, India

Online published on 8 May, 2017.

Abstract

T-MANET algorithm uses Taguchi Method that helps in selecting multiple feasible parameters to setup the MANET for an application performance. Parameters selected by T-MANET helps in obtaining the better than best performance of MANET routing protocol. The need, popularity and easy deployment of MANET with less cost has increase the area of applications in realistic environment from military to day-to-day life and research to business. The applications uses MANET need best performance where application performance is dependent on various factors. Routing Load, Delay and Throughput metrics are used to evaluate MANET performance using OPNET simulator for a realistic application environment for ‘Number of Nodes ’, ‘Routing Protocols ’and ‘Transmission Data Rate ’factors. The result story shows that optimized throughput for MANET is obtained with the combination factors as 100 nodes, AODV routing protocol with 11 mbps ‘Transmission Data Rate ’without affecting noise factor as pause time. Optimizing delay response variable for MANET the T-MANET result suggest that for 25 numbers of nodes, GRP Routing Protocol is as significant factor with the ‘Transmission Data Rate ’11 mbps. With one of the response variable it is observed that any ‘Number of Nodes ’and AODV routing protocol having 1 mbps ‘Transmission Data Rate ’will perform best routing.

Keywords

MANET, AODV, Taguchi, Orthogonal Array (OA), Routing Load, Throughput, Delay