Sivashanmugam.N1
and Jothi Venkateshwaran.C2
1Research Scholar, PG & Research Department of Computer Science, Presidency
College, Madras University, Chennai-60005, Tamilnadu, India
2
Professor & Head, Dept. of Computer Science and Engineering, St. Peter's Institute of
Higher Education and Research, Chennai, Tamilnadu, India
ABSTRACT
The bandwidth utilization plays a vital role in a Wireless Sensor Network (WSN) that transmits data
packets from source peer to perspective destination peer without any packet loss and time delay. In a
conventional system, two main features cannot be satisfied concurrently such as low delay and high data
reliability and then the peer was transferred fewer data packets and it optimized with regular bandwidth
rate. Moreover, the convention of bandwidth in network routers influences the quality of service (QoS). To
overcome the above issues, an Efficient Reliability and Interval Discrepant Routing (ERIDR) algorithm is
proposed to optimize bandwidth utilization on the router network with the help of bandwidth optimizer. The
bandwidth optimizer allocates required bandwidth for data transmission to each peer simultaneously to
ensure the bandwidth efficiency. The proposed design is to optimize bandwidth utilization of every peer and
increase data processing via higher bandwidth rate that reduces time delay and minimizes energy
consumption. The proposed method establishes a high bandwidth rate router to transmit data concurrently
from source peer to destination peer (peer-to-peer) without any packet loss by initializing host IP address
for every peer. Based on Experimental evaluations, proposed methodology reduces 3.32 AD (Average
Delay), 0.05 ET (Execution Time), 5.44 EC (Energy Consumption) and 0.28 BU (Bandwidth Utilization)
compared than existing methodologies.
KEYWORDS
Bandwidth Optimization, Energy Consumption (EC), Efficient Reliability and Interval Discrepant Routing (ERIDR) Algorithm, quality of service (QoS), Average Delay (AD), Execution Time (ET), and Bandwidth Utilization (BU).
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