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논문 기본 정보

자료유형
학술대회자료
저자정보
Satish Anamalamudi (Dalian University of Technology) Minglu Jin (Dalian University of Technology) Jae Moung Kim (INHA University)
저널정보
한국정보통신학회 INTERNATIONAL CONFERENCE ON FUTURE INFORMATION & COMMUNICATION ENGINEERING 2015 INTERNATIONAL CONFERENCE ON FUTURE INFORMATION & COMMUNICATION ENGINEERING Vo.7 No.1
발행연도
2015.6
수록면
87 - 90 (4page)

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End-to-end application throughput, network power consumption and routing control overhead at network layer of Cognitive Radio Ad-Hoc Networks (CRAHNs) is mainly based on common control channel. Hence, reliable and robust CCC design for CR-AODV routing protocol is utmost important to provide shortest end-to-end channel-path and reduced node, network power consumption. State-of-the-art CR-AODV routing protocols propose In-band or Out-of-band CCC design for routing and cognitive control message exchange. But, multichannel hidden terminals, longer end-to-end channel-path and increased channel rendezvous time results in additional routing and cognitive control overhead with longer end-to-end delays and increased node power consumption. To evade this, we propose Directional antenna based Hybrid-CCC-CR-AODV routing protocol with adaptive power control algorithm for CRAHNs. Experimental results reveal that proposed Directional antenna based Hybrid-CCC-CR-AODV routing protocol has decreased routing and cognitive control overhead with increased end-to-end application throughput when compared with Omnidirectional antenna based In-band/Out-of-band CCC-CR-AODV routing protocols.

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Abstract
I. INTRODUCTION
II. PROPOSED WORK
III. SIMULATION RESULTS
IV. CONCLUSION
REFERENCES

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