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보안공학연구지원센터(IJMUE) International Journal of Multimedia and Ubiquitous Engineering Vol.10 No.2 2015.02 pp.171-186
※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.
To ensure fair packet broadcasting without service disruption in wireless network from one network cell to another is the key to successful mobile services. However, enforcing fair packet broadcasting is challenging because decision policies within the network cell though works efficiently, considerably reduces the energy consumption level. Using MAC protocol, communication framework gets improved by cooperatively localizing the system and achieves space-time synchronization. But redundancy occurs on cellular wireless network for higher energy levels. This work presents the design and implementation of collision free packet broadcasting in wireless network known as Consistent Shortcut Transfigure Path Construction (CSTPC) mechanism. Under this mechanism the main objective is to develop a transfigure path (i.e., alter path) when the link failure occurs during broadcasting (i.e.,) handover the call. Initially, consistent shortcut is created for constructing alter path and when the link gets failed packet handover takes place. Consistent shortcut is created by combining the Midpoint and Simpsons rule procedure. The Midpoint and Simpsons procedure creates the shortcut and with this reduces the rate of energy consumption gradually. Secondly, error rate on call handover is reduced using CSTPC mechanism by applying Estimation of Distribution algorithm. The constructed Estimation of Distribution algorithm in CSTPC mechanism feasibly handover the packets to neighboring base station with minimal error rate. In this way, minimal error rate avoids retransmission of packets due to the collision and path failure. Furthermore, the CSTPC mechanism reduce the energy consumption level on transfigure path construction and also avoids the retransmission of packets (i.e.,) call in wireless network. Experimental work is carried out using factors such as avoidance of retransmission rate, energy consumption rate, and call broadcasting efficiency.
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