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Revisiting Multi-channel Communication to Mitigate Interference and Link Dynamics in Wireless Sensor Networks

机译:重新审视多通道通信以缓解无线传感器网络中的干扰和链路动态

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Multichannel communication has been proposed as alternative to adaptive (single-channel) routing protocols for mitigating the impact of interference and link dynamics in wireless sensor networks. While several studies have advocated features of both techniques (not without running up against contradicting arguments) a comprehensive study that aligns these results is still lacking. This paper aims at filling this gap. We present an experimental test bed setup used to perform extensive measurements for both single-channel and multichannel communication. We first analyze single-channel and multichannel communication over a single-hop in terms of packet reception ratio, maximum burst loss, temporal correlation of losses, and loss correlations across channels. Results show that multichannel communication with channel hopping significantly reduces link burstiness and packet loss correlation. For multi-hop networks, multi-channel communication and adaptive routing show similar end-to-end reliability in dense topologies, while multichannel communication can outperform adaptive routing in sparse networks with bursty links.
机译:已提出多信道通信作为自适应(单信道)路由协议的替代方案,以减轻无线传感器网络中干扰和链路动态的影响。尽管有几项研究主张了这两种技术的特征(并非没有矛盾的论据),但仍缺乏使这些结果一致的综合研究。本文旨在填补这一空白。我们介绍了一个实验性的测试平台,用于对单通道和多通道通信进行广泛的测量。我们首先根据数据包接收率,最大突发丢失,丢失的时间相关性以及跨通道的丢失相关性来分析单跳上的单通道和多通道通信。结果表明,具有信道跳变的多信道通信显着降低了链路突发性和数据包丢失的相关性。对于多跳网络,在密集拓扑中,多通道通信和自适应路由显示出相似的端到端可靠性,而在具有突发链路的稀疏网络中,多通道通信的性能优于自适应路由。

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