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Cross layer optimization of end to end delay in WSN for smart grid communications

机译:WSN中用于智能电网通信的端到端延迟的跨层优化

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摘要

The quality of service (QoS) in Smart Grid (SG) communications has a significant importance on emerging SG applications. Wireless sensor networks (WSNs) were considered as a compatible choice to fulfill this issue. In fact, WSNs could be widely used in a wide range of smart grid applications because they have been successfully adopted in several critical areas. Unlike other WSN applications, SG requires precise estimation of specific topologies and performance parameters such as the end to end (E2E) delay. In this paper, we perform a complete analysis of the E2E source-sink delay considering a cluster-tree topology. For this analysis, an autoregressive filter is used to estimate the average values of delay. The main contribution of this work is to perform a better interaction between physical, MAC, network and application layers for SG E2E communications. Our method is based on the assumption that the E2E delay is calculated after sending a beacon using the Markov model and considering Rayleigh fading channels.
机译:智能电网(SG)通信中的服务质量(QoS)对新兴的SG应用程序具有重要意义。无线传感器网络(WSN)被认为是解决此问题的兼容选择。实际上,由于无线传感器网络已在多个关键领域成功采用,因此可以广泛应用于各种智能电网应用中。与其他WSN应用不同,SG需要精确估计特定的拓扑和性能参数,例如端到端(E2E)延迟。在本文中,我们考虑了群集树拓扑,对E2E源宿延迟进行了完整的分析。对于此分析,使用自回归滤波器来估计延迟的平均值。这项工作的主要贡献是为SG E2E通信在物理,MAC,网络和应用程序层之间执行更好的交互。我们的方法基于这样的假设,即在使用Markov模型发送信标并考虑瑞利衰落信道后计算E2E延迟。

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