基于颜色的AODV变范围传输功率转发方案

Atif A. Alghamdi, P. King, Nawaf S. Mirza
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引用次数: 0

摘要

广播是自组织路由协议的关键部分。设计有效的转发方案可以减少冗余和冲突。最近,我们提出了一种节能自适应转发方案(EEAFS),该方案除了使用传输功率分类方案外,还使用1跳邻居知识对移动设备进行分组。基于该分类方案,选择位于不同分组重叠区域的网关节点转发广播消息。本文对进一步完善EEAFS有两个主要贡献。1)为网络中的每组节点分配一种颜色,以增加位于传输功率水平相似的不同组之间的网关节点的意识。2)在网关节点之间开发基于权重的协调方法,以最小化重叠。这有助于减少冗余和碰撞,特别是在高密度区域。通过使用可变传输功率,不仅可以减少拥塞、干扰和节约能源,而且可以有效地将节点的传输功率水平纳入转发决策过程。我们的解决方案是通过使用ns-2实现和广泛评估的。仿真结果表明,所提出的广播技术具有可扩展性,可以显著减少MAC层的冲突,丢包率降低高达70%。它还减少了端到端的延迟,同时消耗更少的能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Colour-based forwarding scheme with variable-range transmission power in AODV
Broadcasting is a crucial part of ad hoc routing protocols. Designing efficient forwarding scheme can reduce redundancy and collisions. Recently, we have proposed an Energy-Efficient Adaptive Forwarding Scheme (EEAFS) that uses 1-hop neighbourhood knowledge, in addition to a transmission power classification scheme to group mobile devices based on their transmission power level. Based on this classification scheme, gateway nodes that are located in the overlapping areas of different groups, are selected to forward the broadcast message. This paper has two main contributions to further improve the EEAFS. 1) Assigning a colour to each group of nodes in the network, to increases the awareness of the gateway nodes located between different groups of similar transmission power levels. 2) Developing a weight-based coordination approach between the gateway nodes to minimising the overlapping. This contributes to reducing the redundancy and collisions especially, in high dense regions. By using variable transmission power, we not only reduce the congestion, interference and conserve energy, but we also effectively involve the node's transmission power level in the forwarding decision-making process. Our solution is implemented and extensively evaluated by using ns-2. The simulation results show that the proposed broadcast technique is scalable and can significantly reduce collisions at the MAC layer by achieving up to 70 percent reduction in packet loss ratio. It also reduces end-to-end delay while consuming less energy.
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