Recent Study on Dynamic Multi Constraint Routing Based Efficient Data Transmission in Manet for Improved Sink Point Streaming

Authors

  • M. Prakash Department of Computer Science, Vinayaka Mission’s Kirupananda Variyar Arts and Science College, Vinayaka Mission’s Research Foundation Deemed to be University, Salem, India.

DOI:

https://doi.org/10.9734/bpi/rder/v11/5348D

Keywords:

Manet, streaming support, QoS, dynamic routing, multi constraint routing, SSS

Abstract

The Mobile Adhoc network (Manet) has been identified as keen networking scenario in modern internet world. The most networking solutions have been enabled to access through mobile devices. The physical characteristics of mobile nodes keep changing the topology of network at each second. However, achieving higher streaming performance is most important in point of quality of service. There exist numerous techniques to route data packets between the source and sink/destination nodes, but suffer with poor performance. To overcome the deficiency, a dynamic multi constraint routing algorithm has been presented in this paper. The method considers different parameters like energy, lifetime, traffic, mobility speed, direction and hop count in route selection. According to the above-mentioned parameters, the multi constraint algorithm estimates streaming support score (SSS) for any route to perform routing of packets. The algorithm improved routing performance of routing and increases the streaming rate in Manet. Based on the measures estimated, the method computes the streaming support score value for each route. Based on the value of SSs, a single route has been selected to forward the data packet. The proposed DMR algorithm has produced higher throughput performance and reduces the latency.

Published

2021-02-17

How to Cite

M. Prakash. (2021). Recent Study on Dynamic Multi Constraint Routing Based Efficient Data Transmission in Manet for Improved Sink Point Streaming. Recent Developments in Engineering Research Vol. 11, 153–163. https://doi.org/10.9734/bpi/rder/v11/5348D