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Proposal and Evaluation of BLE Discovery Process Based on New Features of Bluetooth 5.0

机译:基于蓝牙5.0新功能的BLE发现过程的建议与评估

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摘要

The device discovery process is one of the most crucial aspects in real deployments of sensor networks. Recently, several works have analyzed the topic of Bluetooth Low Energy (BLE) device discovery through analytical or simulation models limited to version 4.x. Non-connectable and non-scannable undirected advertising has been shown to be a reliable alternative for discovering a high number of devices in a relatively short time period. However, new features of Bluetooth 5.0 allow us to define a variant on the device discovery process, based on BLE scannable undirected advertising events, which results in higher discovering capacities and also lower power consumption. In order to characterize this new device discovery process, we experimentally model the real device behavior of BLE scannable undirected advertising events. Non-detection packet probability, discovery probability, and discovery latency for a varying number of devices and parameters are compared by simulations and experimental measurements. We demonstrate that our proposal outperforms previous works, diminishing the discovery time and increasing the potential user device density. A mathematical model is also developed in order to easily obtain a measure of the potential capacity in high density scenarios.
机译:在传感器网络的实际部署中,设备发现过程是最关键的方面之一。最近,一些作品已经通过仅限于4.x版的分析或仿真模型分析了蓝牙低功耗(BLE)设备发现的主题。事实证明,不可连接和不可扫描的非定向广告是在相对较短的时间内发现大量设备的可靠选择。但是,蓝牙5.0的新功能使我们能够基于BLE可扫描的无向广告事件,在设备发现过程中定义一个变体,从而提高发现能力并降低功耗。为了表征此新设备发现过程,我们通过实验对BLE可扫描无向广告事件的真实设备行为进行建模。通过仿真和实验测量,比较了不同数量的设备和参数的未检测数据包概率,发现概率以及发现等待时间。我们证明了我们的建议优于以前的工作,从而减少了发现时间并增加了潜在的用户设备密度。还开发了数学模型,以便轻松获得高密度场景中潜在容量的度量。

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