基于能量感知移动主干网的无线自组网中的多播

Choo-Chin Tan, I. Rubin
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引用次数: 6

摘要

为无线自组织网络综合高效、可扩展的组播方案是一项具有挑战性的任务。本文提出了三种采用动态合成能量感知移动骨干网(E-MBN)的组播算法,以实现组播组成员之间高效的消息分发。E-MBN采用节电机制,允许非活动节点进入休眠状态以节省能量,并选择能量储备较高的节点作为骨干节点(bn),以延长网络寿命。采用合成骨干网(Bnet)的分层网络结构,使组播协议能够实现低控制开销和高传输效率。研究的组播算法有:(1)Bnet泛洪组播算法(BFMA);(2)共享骨干组播子网(SBMS);动态自适应混合组播算法(HMA)。通过分析和仿真评估,研究了基于E-MBN的组播协议的吞吐量(每瓦特)性能效率。为了公平比较,我们定义并实现了具有省电机制的扩展版本ODMRP (ODMRP- ps)。我们的研究结果表明,与ODMRP-PS相比,基于E-MBN的组播算法获得了更高的性能,并对这些算法进行了性能比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multicasting in Energy Aware Mobile Backbone Based Wireless Ad Hoc Networks
The synthesis of efficient and scalable multicasting schemes for wireless ad hoc networks is a challenging task. In this paper, we present three multicast algorithms that employ a dynamically synthesized energy-aware mobile backbone network (E-MBN) to achieve efficient message distribution among members of the multicast groups. E-MBN incorporates a power saving mechanism that allows inactive nodes to transition into sleep state to conserve energy, and elects nodes with higher energy reserves as backbone nodes (BNs) to extend network lifetime. Using the synthesized backbone network (Bnet), we have a hierarchical networking architecture that enables a multicast protocol to achieve low control overhead and high transmission efficiency. The multicast algorithms under investigation are: (1) Bnet flooding multicast algorithm (BFMA); (2) shared backbone multicast subnetwork (SBMS); and (3) dynamically adaptive hybrid multicast algorithm (HMA). We study the throughput (per-watt) performance efficiency of the E-MBN based multicast protocols through analytical and simulation evaluations. For fair comparison, we defined and implemented an extended version of ODMRP with power saving mechanism (ODMRP-PS). Our results demonstrate the enhanced performance achieved by the E-MBN based multicast algorithms when compared to ODMRP-PS, and provide performance comparisons for these algorithms.
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