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Accurate Energy Consumption Modeling of IEEE 802.15.4e TSCH Using Dual-BandOpenMote Hardware

机译:使用Dual-BandOpenMote硬件的IEEE 802.15.4e TSCH的精确能耗建模

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摘要

The Time-Slotted Channel Hopping (TSCH) mode of the IEEE 802.15.4e amendment aims to improve reliability and energy efficiency in industrial and other challenging Internet-of-Things (IoT) environments. This paper presents an accurate and up-to-date energy consumption model for devices using this IEEE 802.15.4e TSCH mode. The model identifies all network-related CPU and radio state changes, thus providing a precise representation of the device behavior and an accurate prediction of its energy consumption. Moreover, energy measurements were performed with a dual-band OpenMote device, running the OpenWSN firmware. This allows the model to be used for devices using 2.4 GHz, as well as 868 MHz. Using these measurements, several network simulations were conducted to observe the TSCH energy consumption effects in end-to-end communication for both frequency bands. Experimental verification of the model shows that it accurately models the consumption for all possible packet sizes and that the calculated consumption on average differs less than 3% from the measured consumption. This deviation includes measurement inaccuracies and the variations of the guard time. As such, the proposed model is very suitable for accurate energy consumption modeling of TSCH networks.
机译:IEEE 802.15.4e修订版的时隙信道跳变(TSCH)模式旨在提高工业和其他具有挑战性的物联网(IoT)环境中的可靠性和能效。本文介绍了使用此IEEE 802.15.4e TSCH模式的设备的准确,最新的能耗模型。该模型识别所有与网络相关的CPU和无线电状态变化,从而提供设备行为的精确表示以及其能耗的准确预测。此外,使用运行OpenWSN固件的双频段OpenMote设备执行了能量测量。这使得该模型可以用于使用2.4 GHz以及868 MHz的设备。使用这些测量,进行了几个网络仿真,以观察两个频段在端到端通信中的TSCH能耗影响。该模型的实验验证表明,它可以对所有可能的数据包大小的消耗量进行准确建模,并且计算出的消耗量与测量到的消耗量平均相差不到3%。该偏差包括测量误差和保护时间的变化。这样,提出的模型非常适合于TSCH网络的精确能耗模型。

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