M2M系统中异构网络的元路由

C. Shih, Guan-Fan Wu
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引用次数: 3

摘要

机器对机器(M2M)允许自主计算系统相互通信,并在没有人为干预的情况下协同完成工作。M2M网络中的每个节点可能有不同的通信接口,如Zigbee、Z-wave、Wi-Fi等。我们设计了一个路由框架,在给定的传输策略下,通过选择路由路径,使M2M能够跨异构网络接口传输数据。该框架可以在动态的网络环境中工作,例如包括一个新节点或丢失一个现有节点,框架将在运行时自动重建路由,而无需开发人员/管理员的指令。当新节点加入网络时,向网络广播路由探索消息。每个节点根据探索消息更新到新节点的路由表。然后,新节点将向邻居发送请求消息,以接收邻居的应答消息。收集回复消息后,新节点可以自己构建路由表。当一个节点检测到连接失败时,它可以从附近的邻居那里恢复路由表。实验结果表明,元路由框架可以确定高吞吐量、高能耗的吞吐量策略和低吞吐量、低能耗的能量策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Meta-routing over heterogeneous networks in M2M systems
Machine-to-machine (M2M) allows autonomous computation systems to communicate with each other and to collaborately accomplish the works without human intervention. Each node in M2M network may have different communication interface such as Zigbee, Z-wave and Wi-Fi. We design a routing framework that can enable M2M to transmit data across heterogeneous network interfaces via selecting a routing path under given transmission policy. The framework can work in the dynamic network environment, such as including a new node or losting an existin node, the framework will reconstruct the route automatically without developer/administrator instruction at run-time. A new node broadcasts a route exploration message to the network when it joins to the network. Every node updates the routing table to the new node according to the exploration message. Then the new node will send request message to the neighbors to receive the reply messages from them. After collecting the reply messages, the new node can then build the routing table itself. When a node detects a connection failure, it can recover the routing table from nearby neighbors. The experiment results show that we show that the meta-route framework determine throughput policy with high throughput and high energy consumption, and energy policy with low throughput and low energy consumption.
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