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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Towards Reliable IEEE 802.15.4g SUN with Re-transmission Shaping and Adaptive Modulation Selection
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Towards Reliable IEEE 802.15.4g SUN with Re-transmission Shaping and Adaptive Modulation Selection

机译:通过重新传输整形和自适应调制选择可靠的IEEE 802.15.4g SUNE

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摘要

In this paper, we propose and evaluate two mechanisms aimed at improving the communication reliability of IEEE 802.15.4g SUN (Smart Utility Networks) in industrial scenarios: RTS (Re-Transmission Shaping), which uses acknowledgements to track channel conditions and dynamically adapt the number of re-transmissions per packet, and AMS (Adaptive Modulation Selection), which makes use of reinforcement learning based on MAB (Multi-Armed Bandits) to choose the modulation that provides the best reliability for each packet re-transmission. The evaluation of both mechanisms is performed through computer simulations using a dataset obtained from a real-world deployment and two widely used metrics, the PDR (Packet Delivery Ratio) and the RNP (Required Number of Packet transmissions). The PDR measures the ratio between received and transmitted packets, whereas the RNP is the number of packet repetitions before a successful transmission. The results show that both mechanisms allow to increase the communication reliability while not jeopardizing the battery life-time constraints of end devices. For example, when three re-transmissions per packet are allowed, the PDR reaches 98/96% with a RNP of 2.03/1.32 using RTS and AMS, respectively. Additionally, the combination of both proposed mechanisms allows to reach a 99% PDR with a RNP of 1.7, making IEEE 802.15.4g SUN compliant with the stringent data delivery requirements of industrial applications.
机译:在本文中,我们提出并评估了两个机制,旨在提高IEEE 802.15.4G Sun(智能公用事业网络)在工业场景中的通信可靠性:RTS(重新传输整形),它使用确认跟踪信道条件并动态调整每个数据包的重新传输数量和AMS(自适应调制选择),它利用基于MAB(多武装带)的增强学习来选择为每个分组重新传输提供最佳可靠性的调制。通过使用从真实世界部署的数据集和两个广泛使用的度量,PDR(分组传送比率)和RNP(所需的分组传输数)来执行两种机制的评估。 PDR测量接收和传输数据包之间的比率,而RNP是在成功传输之前的分组重复的数量。结果表明,两种机制允许增加通信可靠性,同时不会危及终端设备的电池寿命限制。例如,当允许每个分组进行三次重新传输时,PDR分别使用RTS和AMS达到2.03 / 1.32的RNP。此外,两个提出机制的组合允许使用RNP的RNP达到99%的PDR,使IEEE 802.15.4g太阳符合工业应用的严格数据传送要求。

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