Multicasting Technique to Enhance the Performance of DSR Routing Protocol Using Various Performance Metrics under Different Traffic Conditions in Mobile Ad hoc Networks
Development of an efficient routing protocol is one of the major key challenges in the design of Mobile ad hoc networks (MANETs). DSR reactive routing protocol is the most preferred routing protocol in MANETs due its capability to store already discovered routes in the node’s cache. In DSR routing protocol, in order to find a route to the destination, the source node broadcasts RREQ (Route Request) packets to its all neighbouring nodes and this broadcasting of RREQ packets results in more overhead. In this paper, we propose a multicasting technique to enhance the performance of DSR routing protocol and to reduce the broadcasting overhead. The performance analysis of DSR and enhanced DSR (EDSR) is carried out by varying number of nodes under different traffic conditions with different packet sizes and different network sizes. Also the performance analysis of DSR and enhanced DSR is carried out under different propagation models. The performance metrics used for the performance analysis of DSR and Enhanced DSR are Packet Delivery Ratio (PDR), Average End-to-End Delay, Throughput, Normalized Routing Load (NRL) and Energy Consumption.
목차
Abstract 1. Introduction 2. Dynamic Source Routing Protocol (DSR) 3. Enhanced DSR (EDSR) 4. Simulation Methodology and Performance Metrics 4.1. Simulation Setup 4.2. Traffic Conditions 4.3. Propagation Models 4.4. Performance Metrics 5. Analysis of Simulation Results 5.1. Performance Analysis of DSR And EDSR by Varying Number Of Nodes Under TCP And CBR Traffic Condition With 512 Bytes And 1000 Bytes Packet Size 5.2. Performance Analysis of DSR and EDSR by Varying Number of Nodes Under TCP and FTP Traffic Condition with 512 Bytes and 1000 Bytes Packet Size 5.3. Performance Analysis of DSR and EDSR by Varying Number of Nodes under UDP and CBR Traffic Condition with 512 Bytes and 1000 Bytes Packet Size 5.4. Performance Analysis of DSR and EDSR by Varying Number of Nodes Under TCP and CBR Traffic Condition with Two Ray Ground and Shadowing Propagation Models 5.5. Performance Analysis of DSR and EDSR by varying number of nodes under TCP and FTP traffic condition with two ray ground and Shadowing propagation models. 5.6. Performance Analysis of DSR and EDSR by varying number of nodes under UDP and CBR traffic condition with two ray ground and Shadowing propagation models. 5.7. Performance Analysis of DSR and EDSR by varying number of nodes under TCP and CBR traffic condition with 1000m*1000m network size and 1500m*1500m network size. 5.8. Performance Analysis of DSR and EDSR by Varying Number of Nodes under TCP and FTP Traffic Condition with 1000m*1000m Network Size and 1500m*1500m Network Size 5.9. Performance Analysis of DSR and EDSR by varying number of nodes under UDP and CBR traffic condition with 1000*1000 network size and 1500*1500 network size. 6. Conclusion References
키워드
MANETsDSREDSRTCPCBRFTPUDPTwo ray groundShadowingPDRDelayThroughputNRLEnergy Consumption
저자
Kulwinder Kaur [ Research Scholar CSE Department DAV University Jalandhar Punjab ]
Simar Preet Singh [ Assistant Professor CSE Department DAV University Jalandhar Punjab ]
보안공학연구지원센터(IJFGCN) [Science & Engineering Research Support Center, Republic of Korea(IJFGCN)]
설립연도
2006
분야
공학>컴퓨터학
소개
1. 보안공학에 대한 각종 조사 및 연구
2. 보안공학에 대한 응용기술 연구 및 발표
3. 보안공학에 관한 각종 학술 발표회 및 전시회 개최
4. 보안공학 기술의 상호 협조 및 정보교환
5. 보안공학에 관한 표준화 사업 및 규격의 제정
6. 보안공학에 관한 산학연 협동의 증진
7. 국제적 학술 교류 및 기술 협력
8. 보안공학에 관한 논문지 발간
9. 기타 본 회 목적 달성에 필요한 사업
간행물
간행물명
International Journal of Future Generation Communication and Networking
간기
격월간
pISSN
2233-7857
수록기간
2008~2016
십진분류
KDC 505DDC 605
이 권호 내 다른 논문 / International Journal of Future Generation Communication and Networking Vol.9 No.4