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Ad Hoc Routing with Early Unidirectionality Detection and Avoidance

机译:具有早期单向性检测和避免功能的临时路由

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This paper is motivated by the observation that current research in ad hoc networks mostly assumes a physically flat network architecture with the nodes having homogeneous characteristics, roles, and networking- and processing-capabilities (e.g., network resources, computing power, and transmission power). In real-world ad hoc networks however, node heterogeneity is inherent. New mechanisms at the network layer are required for effective and efficient utilization of such heterogeneous networks. We discuss the issues and challenges for routing protocol design in heterogeneous ad hoc networks, and focus on the problem of quickly detecting and avoiding unidirectional links. We propose a routing framework called Early Unidirectionality Detection and Avoidance (EUDA) that utilizes geographical distance and path loss between the nodes for fast detection of asymmetric and unidirectional routes. We evaluate our scheme through ns-2 simulation and compare it with existing approaches. Our results demonstrate that our techniques work well in these realistic, heterogeneous ad hoc networking environments with unidirectional links.
机译:本文的动机是观察到的是,当前在ad hoc网络中的研究大多假设一种物理上扁平的网络体系结构,其节点具有相同的特性,角色以及网络和处理能力(例如,网络资源,计算能力和传输能力) 。但是,在现实世界的自组织网络中,节点异构是固有的。网络层需要新的机制来有效和高效地利用此类异构网络。我们讨论了异构ad hoc网络中路由协议设计的问题和挑战,并将重点放在快速检测和避免单向链路的问题上。我们提出了一种路由框架,称为早期单向检测和避免(EUDA),该框架利用节点之间的地理距离和路径损耗来快速检测非对称和单向路由。我们通过ns-2仿真评估我们的方案,并将其与现有方法进行比较。我们的结果表明,我们的技术在具有单向链接的这些现实的,异构的自组织网络环境中效果很好。

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