Implement High Bandwidth Data Transmission in Mobile Sensor using Distribute Three Hop Routing Protocol |
Author(s): |
| S. Nithya , P.S.V. COLLEGE OF ENGINEERING AND TECHNOLOGY; C. Prakash Narayanan, P.S.V. COLLEGE OF ENGINEERING AND TECHNOLOGY; B. Sakthivel, P.S.V. COLLEGE OF ENGINEERING AND TECHNOLOGY |
Keywords: |
| Data Transmission, Mobile Sensor, Routing Protocol |
Abstract |
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Hybrid wireless network systems combination the benefits of both mobile ad-hoc networks and infrastructure wireless networks have been receiving increased attention due to their ultra-high performance. An effective information steering convention is essential in such systems for high system limit and adaptability. Be that as it may, most directing conventions for these systems just consolidate the impromptu transmission mode with the cell transmission mode, which acquires the disadvantages of specially appointed transmission. This paper shows a Distributed Three-hop Routing convention (DTR) for half and half remote systems. To take full favorable position of the across the board base stations, DTR isolates a message information stream into portions and transmits the fragments in a dispersed way. It makes full spatial reuse of a framework by means of its fast specially appointed interface and mitigates versatile passage congestion by means of its cell interface. Besides, sending portions to various base stations at the same time builds throughput and makes full utilization of broad base stations. What's more, DTR essentially diminishes overhead because of short way lengths and the end of course revelation and upkeep. DTR likewise has a blockage control calculation to abstain from over-burdening base stations. Hypothetical investigation and recreation comes about demonstrate the predominance of DTR in examination with other steering conventions regarding throughput limit, versatility and portability strength. The outcomes additionally demonstrate the adequacy of the blockage control calculation in adjusting the heap between base stations. |
Other Details |
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Paper ID: IJSRDV6I10099 Published in: Volume : 6, Issue : 1 Publication Date: 01/04/2018 Page(s): 74-83 |
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