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Adaptive Overhead Reduction via MEWMA Control Charts

机译:通过MEWMA控制图自适应减少开销

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摘要

In an effort to reduce overhead in proactive protocols, rather than use a global period for transmission of control information, we propose to transmit based on changes in a node's local conditions. For OLSR, a proactive link-state routing protocol, we use a significant change in the number of edges in a node's two-hop neighbourhood and topological graph as indicators of topology change warranting an update. When the associated exponentially weighted moving average (EWMA) charts and multivariate EWMA chart signal out-of-control, a node transmits a HELLO, a topology control (TC), or both HELLO and TC messages. We use ns-2 simulations to compare OLSR to our TS-OLSR, and other variants of OLSR. We find that TS-OLSR obtains a statistically significant reduction in overhead compared to the other protocols while maintaining the packet delivery ratio. The approach is general and may find use in other applications requiring response to changes in local conditions.
机译:为了减少主动协议中的开销,而不是使用全局时间段来传输控制信息,我们建议根据节点本地条件的变化进行传输。对于OLSR(一种主动的链路状态路由协议),我们使用节点的两跳邻域和拓扑图中的边数显着变化作为拓扑更新的指标,从而有必要进行更新。当关联的指数加权移动平均值(EWMA)图和多元EWMA图信号失控时,节点将发送HELLO,拓扑控制(TC)或HELLO和TC消息。我们使用ns-2模拟将OLSR与我们的TS-OLSR和其他OLSR变体进行比较。我们发现,与其他协议相比,TS-OLSR在统计上显着降低了开销,同时保持了数据包的传输率。该方法是通用的,可以在需要响应本地条件变化的其他应用程序中找到用途。

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