Modeling Routing Overhead Generated by Wireless Proactive Routing Protocols
arXiv:1109.2028 · doi:10.1109/GLOCOMW.2011.6162343
Abstract
In this paper, we present a detailed framework consisting of modeling of routing overhead generated by three widely used proactive routing protocols; Destination-Sequenced Distance Vector (DSDV), Fish-eye State Routing (FSR) and Optimized Link State Routing (OLSR). The questions like, how these protocols differ from each other on the basis of implementing different routing strategies, how neighbor estimation errors affect broadcast of route requests, how reduction of broadcast overhead achieves bandwidth, how to cope with the problem of mobility and density, etc, are attempted to respond. In all of the above mentioned situations, routing overhead and delay generated by the chosen protocols can exactly be calculated from our modeled equations. Finally, we analyze the performance of selected routing protocols using our proposed framework in NS-2 by considering different performance parameters; Route REQuest (RREQ) packet generation, End-to-End Delay (E2ED) and Normalized Routing Load (NRL) with respect to varying rates of mobility and density of nodes in the underlying wireless network.
References in corpus (3)
Cited by in corpus (13)
- Modeling Routing Overhead Generated by Wireless Proactive Routing Protocols
- On Energy Efficiency and Delay Minimization in Reactive Protocols in Wireless Multi-hop Networks
- Analysis and Modeling Experiment Performance Parameters of Routing Protocols in MANETs and VANETs
- Modeling and Evaluating Enhancements in Expanding Ring Search Algorithm for Wireless Reactive Protocols
- On using Multiple Quality Link Metrics with Destination Sequenced Distance Vector Protocol for Wireless Multi-Hop Networks
- Towards LP Modeling for Maximizing Throughput and Minimizing Routing Delay in Proactive Protocols in Wireless Multi-hop Networks
- Routing Load of Route Calculation and Route Maintenance in Wireless Proactive Routing Protocols
- Modeling Enhancements in DSR, FSR, OLSR under Mobility and Scalability Constraints in VANETs
- An Energy Efficient Decoding Scheme for Wireless Body Area Sensor Networks
- Evaluating Wireless Proactive Routing Protocols under Mobility and Scalability Constraints
- Evaluating Wireless Reactive Routing Protocols with Linear Programming Model for Wireless Ad-hoc Networks
- Modeling and Evaluating Performance of Routing Operations in Reactive Routing Protocols
- Investigating Quality Routing Link Metrics in Wireless Multi-hop Networks