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An LQI-Based Packet Loss Rate Model for IEEE 802.15.4 Links

机译:IEEE 802.15.4链路的基于LQI的分组丢失率模型

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Packet loss rate (PLR) is a crucial and popular link quality metric for wireless sensor networks (WSNs). In this paper, we investigate how to estimate PLR of an IEEE 802.15.4 link from the information that is easily obtained from radio chip. Specifically, we aim to establish a generalized model that connects PLR to link quality indicator (LQI), a physical layer link quality measure, and packet length under diverse environmental conditions. To this aim, an extensive experimental study considering various environmental factors and packet lengths is conducted, from which rich observations are made on the spatio-temporal characteristics of the dependency of PLR on LQI and packet length. Based on the observations, we propose a packet loss rate model as a function of LQI and packet length, that is applicable in all experimented scenarios. Besides, a comparison with a literature LQI-only based PLR model shows that our proposed model has higher accuracy for various packet lengths. Finally, we provide the implications of the empirical study and the guidelines for real-world WSN applications to construct and adapt the proposed PLR model in different environments.
机译:数据包丢失率(PLR)是无线传感器网络(WSN)的重要性和流行的链路质量指标。在本文中,我们研究了如何从无线电芯片容易获得的信息中估算IEEE 802.15.4链路的PLR。具体而言,我们的目标是建立一个广义模型,该模型将PLR连接到链路质量指示器(LQI),物理层链路质量测量和数据包长度在不同的环境条件下。为此目的,考虑各种环境因素和分组长度的广泛的实验研究,从中对PLR依赖性的富裕观察,对LQI和分组长度的依赖性进行了丰富的观察。基于观察,我们提出了一种零件丢失率模型作为LQI和分组长度的函数,适用于所有实验场景。此外,与基于文献的PLR模型的比较表明,我们所提出的模型具有更高的各种分组长度的准确性。最后,我们提供了实证研究的影响和现实世界WSN应用程序的指导方针,在不同环境中构建和调整所提出的PLR模型。

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