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首页> 外文期刊>Malaysian Journal of Computer Science >Path Discovery And Selection For Energy Efficient Routing With Transmit Power Control In MANET
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Path Discovery And Selection For Energy Efficient Routing With Transmit Power Control In MANET

机译:MANET中具有发送功率控制的节能路由的路径发现和选择

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摘要

Main aim of the work is to design an energy efficient routing mechanism based on Dynamic Source Routing (DSR). In order to achieve energy efficient reliable transmission, routing here is divided into two parts. One is to discover the path based on Received Signal Strength (RSS) and residual energy and the other is to select based on minimum energy consumption. By eliminating the nodes that has low RSS value in transmission, path breakages can be avoided. Discovering the path based on residual energy results in the reduction of node failure. Selecting the path that consumes less energy extends the network lifetime. The prediction of RSS for path discovery under mobility will make the transmission reliable. The proposed work called Path Discovery and Selection for Energy Efficient Routing (PDSEER) is designed in such a way that when DSR starts the route discovery after checking its route cache , the required transmit power is set first inorder to save energy. Then RSS of the RREQ and node's remaining energy is validated for deciding whether a node can forward the RREQ or not. The data is transmitted after selecting the path that consumes minimum energy. Simulation results are compared for overhead, packet delivery ratio, energy consumption, number of path breakages and delay. The analysis reveals that the proposed system is energy efficient compared to basic DSR, PAMP, SSBR and MTPCR.
机译:这项工作的主要目的是设计一种基于动态源路由(DSR)的节能路由机制。为了实现节能高效的可靠传输,此处的路由分为两个部分。一种是基于接收信号强度(RSS)和剩余能量来发现路径,另一种是基于最小能耗来选择。通过消除传输中RSS值低的节点,可以避免路径中断。基于剩余能量发现路径可减少节点故障。选择消耗较少能量的路径可延长网络寿命。预测移动性下的路径发现的RSS将使传输可靠。拟议的工作被称为“节能路由的路径发现和选择”(PDSEER),其设计方式是,当DSR在检查其路由缓存后开始路由发现时,首先设置所需的发射功率以节省能量。然后,验证RREQ和节点剩余能量的RSS,以决定节点是否可以转发RREQ。在选择消耗最小能量的路径之后,将传输数据。比较仿真结果的开销,数据包传输率,能耗,路径中断数和延迟。分析表明,与基本的DSR,PAMP,SSBR和MTPCR相比,该系统具有更高的能效。

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