An on-demand power and load-aware multi-path node-disjoint source routing scheme implementation using NS-2 for mobile ad-hoc networks
Autor: | Hesham A. Ali, Marwa F. Areed, Dalia I. Elewely |
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Rok vydání: | 2018 |
Předmět: |
Routing protocol
Dynamic Source Routing Engineering business.industry ComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKS 010102 general mathematics DSRFLOW Wireless Routing Protocol 020206 networking & telecommunications Geographic routing 02 engineering and technology 01 natural sciences Link-state routing protocol Optimized Link State Routing Protocol Hardware and Architecture Modeling and Simulation 0202 electrical engineering electronic engineering information engineering Destination-Sequenced Distance Vector routing 0101 mathematics business Software Computer network |
Zdroj: | Simulation Modelling Practice and Theory. 80:50-65 |
ISSN: | 1569-190X |
Popis: | Ad-hoc network consists of a group of mobile nodes with a restricted power supply resources that can communicate with each other without any established infrastructure or centralized administration. The unbalanced distribution of traffic loads among network's nodes led to a power dissipation of overloaded nodes, the loss of these vital nodes causes link failure which could lead to critical topological changes, affect the network operations and its lifetime. This paper summarized the energy consumption problem in ad-hoc wireless networks and the existing power aware routing protocols classification. The main objective of this paper is to introduce and implement a new power and load-aware routing scheme that is based on DSR protocol's scheme. A new cost function was drawn, that allows source nodes to find a multiple node-disjoint power and load aware optimal paths to their destinations, as a way to extend the operational life of nodes and thereby maximize the network lifetime. Simulation results showed that the protocol that is based on this proposed scheme can prolong network lifetime by almost 30% with low traffic loads, and by 40% with high traffic loads compared to pure DSR. |
Databáze: | OpenAIRE |
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