Y. Narasimha Reddy

Work place: Rayalaseema University, Kurnool, A. P., India

E-mail: narasimhareddy.phd@gmail.com

Website:

Research Interests: Computer Networks, Network Architecture, Network Security

Biography

Y.Narasimha Reddy, Research Scholar, Rayalaseema University, Kurnool working as Asst. Professor in Brindavan Institute of Technology & Science, Kurnool in the department of CSE. Certified professional of CCNA and CCAI by CISCO, Bangalore. Areas of Interest are Wireless Ad-Hoc networks, Sensors Networks, IOT and Java. Present research work is on "Congestion Control in Wireless AdHoc networks" under the guidance of Dr.Podili.V.S.Srinivas, Professor, Sreenidhi Institute of Technology and Science, Hyderabad.

Author Articles
A Combined TCP-friendly Rate control with WFQ Approach for Congestion Control for MANET

By Y. Narasimha Reddy P V S. Srinivas

DOI: https://doi.org/10.5815/ijcnis.2018.06.05, Pub. Date: 8 Jun. 2018

Congestion control techniques are extensively used to avoid congestion over the wireless network. But these techniques are incapability of to handle the increased utilization of the various application which raising high congestion and packet loss over the network and causing inconvenient to different services. The TCP-friendly rate control (TFRC) protocol is primarily considered to describe the effective and finest potential provision for such applications which is following it preeminent in the wired and wireless environment. But it also suffers due to slow start and time-consuming process which required several round-trip-time (RTT) to reach an optimal level of the communication rate. As the TRFC transmission rate is highly affected by the increase RTTs and this results in an raise in the packet loss and a corresponding significant decrease in the throughput. In this paper, we propose an integrated TFRC with weighted fair queue (WFQ) approach to overcoming the congestion and minimize the RTTs. The WFQ mechanism manages the incoming heavy traffic to ease the data rate control for smooth data flow to improve throughput. The simulation evaluation of the approach shows an improvisation in throughput with the low delay in different data flow conditions.

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