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An adaptive congestion-aware MAC protocol for wireless sensor networks

机译:无线传感器网络的自适应拥塞感知MAC协议

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In monitoring wireless sensor networks (WSNs) with event-driven applications, the generated traffic usually has bursty characteristics when an event occurs. Transient congestion in the networks would increase delay and packet loss rate severely, reducing the network performance greatly. Through the analysis on delay and packet loss rate in congestion, this paper proposes a congestion-aware mac protocol (C-MAC) for wireless sensor networks. In C-MAC, backoff delay of the nodes around contention area is adopted as a congestion indication. In normal state, the CSMA/CA is working well at sensor nodes. And when the congestion occurs, localized TDMA replaces the CSMA/CA in the congestion nodes. With the above mechanism, the congestion nodes only deliver their data during its assigned slots to control the contention overhead. Finally, we implement the C-MAC in our sensor network testbed. The experiment results show that the proposed MAC protocol could effectively operate on the congestion caused by burst information, and reduce both the delay and packet loss rate significantly.
机译:在使用事件驱动的应用程序监视无线传感器网络(WSN)时,事件发生时,生成的流量通常具有突发性特征。网络中的瞬时拥塞将严重增加延迟和丢包率,从而大大降低网络性能。通过对拥塞中的时延和丢包率的分析,提出了一种用于无线传感器网络的拥塞感知mac协议(C-MAC)。在C-MAC中,争用区域周围的节点的退避延迟被用作拥塞指示。在正常状态下,CSMA / CA在传感器节点上运行良好。并且,当发生拥塞时,本地TDMA会替换拥塞节点中的CSMA / CA。利用以上机制,拥塞节点仅在其分配的时隙期间传送其数据以控制竞争开销。最后,我们在传感器网络测试平台中实现了C-MAC。实验结果表明,所提出的MAC协议可以有效地处理突发信息引起的拥塞,并显着降低时延和丢包率。

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