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Energy Optimization for Wireless Sensor Networks using a Novel Dynamic Multicast Routing Protocol

机译:使用新型动态组播路由协议的无线传感器网络能量优化

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Minimization of energy consumption has always been the predominant factor deciding the acceptability of a routing protocol for wireless ad-hoc networks. In this study we have proposed a novel efficient multicast routing protocols in wireless mobile ad hoc networks is proposed. Due to the high mobility of nodes and highly dynamic topology, performing efficient and robust multicast in a Mobile Ad hoc Network (MANET) is a challenging task. Most of existing multicast protocols in MANETs discover the routing path by flooding message over the whole network, which result in considerable cost for routing discovery and maintenance. Moreover, the reliability of the discovered path cannot be guaranteed, since the stabilities of nodes along such path are unpredictable. Here an attempt is made to devise an algorithm combining the features of both energy efficient and low latency algorithms. The new algorithm is intended to do well in real-world scenarios where the energy capacities of the nodes are not uniform. It employs a mobility prediction based election process to construct a reliable backbone structure performing packet transmission, message flooding, routing discovery and maintenance. Several virtual architectures are used in the protocol without need of maintaining state information for more robust and scalable membership management and packet forwarding in the presence of high network dynamics due to unstable wireless channels and node movements.
机译:能源消耗的最小化一直是决定无线自组织网络路由协议可接受性的主要因素。在这项研究中,我们提出了一种在无线移动自组织网络中新颖有效的多播路由协议。由于节点的高度移动性和高度动态的拓扑,在移动自组织网络(MANET)中执行有效而强大的多播是一项艰巨的任务。 MANET中大多数现有的多播协议都是通过在整个网络上泛洪消息来发现路由路径的,这导致路由发现和维护的成本很高。此外,由于沿着该路径的节点的稳定性是不可预测的,因此不能保证所发现路径的可靠性。这里尝试设计一种结合了节能和低等待时间算法特征的算法。该新算法旨在在节点的能量容量不均匀的现实世界中很好地运行。它采用基于移动性预测的选举过程来构建可靠的骨干结构,以执行数据包传输,消息泛洪,路由发现和维护。由于不稳定的无线信道和节点移动,在存在高网络动态的情况下,协议中使用了几种虚拟体系结构,而无需维护状态信息以进行更健壮和可扩展的成员资格管理和数据包转发。

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