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Accurate and Efficient Modeling of 802.15.4 Unslotted CSMA/CA through Event Chains Computation

机译:通过事件链计算对802.15.4无槽CSMA / CA进行准确,高效的建模

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摘要

Many analytical models have been proposed for evaluating the performance of event-driven 802.15.4 Wireless Sensor Networks (WSNs), in Non-Beacon Enabled (NBE) mode. However, existing models do not provide accurate analysis of large-scale WSNs, due to tractability issues and/or simplifying assumptions. In this paper, we propose a new approach called Event Chains Computation (ECC) to model the unslotted CSMA/CA algorithm used for channel access in NBE mode. ECC relies on the idea that outcomes of the CSMA/CA algorithm can be represented as chains of events that subsequently occur in the network. Although ECC can generate all the possible outcomes, it only considers chains with a probability to occur greater than a pre-defined threshold to reduce complexity. Furthermore, ECC parallelizes the computation by managing different chains through different threads. Our results show that, by an appropriate threshold selection, the time to derive performance metrics can be drastically reduced, with negligible impact on accuracy. We also show that the computation time decreases almost linearly with the number of employed threads. We validate our model through simulations and testbed experiments, and use it to investigate the impact of different parameters on the WSN performance, in terms of delivery ratio, latency, and energy consumption.
机译:已经提出了许多分析模型,用于以非信标启用(NBE)模式评估事件驱动的802.15.4无线传感器网络(WSN)的性能。但是,由于易处理性问题和/或简化的假设,现有模型无法提供对大型WSN的准确分析。在本文中,我们提出了一种称为事件链计算(ECC)的新方法,以对用于NBE模式下的信道访问的无时隙CSMA / CA算法进行建模。 ECC依靠这样的思想,即CSMA / CA算法的结果可以表示为随后在网络中发生的事件链。尽管ECC可以产生所有可能的结果,但它仅考虑发生概率大于预定义阈值的链,以降低复杂性。此外,ECC通过管理通过不同线程的不同链来并行化计算。我们的结果表明,通过适当的阈值选择,可以大幅度减少获得性能指标的时间,而对准确性的影响可以忽略不计。我们还表明,计算时间几乎与所用线程数成线性关系。我们通过仿真和测试平台实验来验证我们的模型,并使用它来研究不同参数对WSN性能的影响,包括传递比率,等待时间和能耗。

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