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Energy Modeling of Neighbor Discovery in Bluetooth Low Energy Networks

机译:低功耗蓝牙低功耗网络中邻居发现的能量建模

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摘要

Given that current Internet of Things (IoT) applications employ many different sensors to provide information, a large number of the Bluetooth low energy (BLE) devices will be developed for IoT systems. Developing low-power and low-cost BLE advertisers is one of most challenging tasks for supporting the neighbor discovery process (NDP) of such a large number of BLE devices. Since the parameter setting is essential to achieve the required performance for the NDP, an energy model of neighbor discovery in BLE networks can provide beneficial guidance when determining some significant parameter metrics, such as the advertising interval, scan interval, and scan window. In this paper, we propose a new analytical model to characterize the energy consumption using all possible parameter settings during the NDP in BLE networks. In this model, the energy consumption is derived based on the Chinese remainder theorem (CRT) for an advertising event and a scanning event during the BLE NDP. In addition, a real testbed is set up to measure the energy consumption. The measurement and experimental results reveal the relationship between the average energy consumption and the key parameters. On the basis of this model, beneficial guidelines for BLE network configuration are presented to help choose the proper parameters to optimize the power consumption for a given IoT application.
机译:鉴于当前的物联网(IoT)应用程序采用许多不同的传感器来提供信息,因此将为物联网系统开发大量的蓝牙低功耗(BLE)设备。为支持如此众多的BLE设备的邻居发现过程(NDP),开发低功耗,低成本BLE广告客户是最具挑战性的任务之一。由于参数设置对于实现NDP所需的性能至关重要,因此在确定某些重要参数指标(例如广告间隔,扫描间隔和扫描窗口)时,BLE网络中邻居发现的能量模型可以提供有益的指导。在本文中,我们提出了一个新的分析模型,以在BLE网络的NDP期间使用所有可能的参数设置来表征能耗。在此模型中,能耗是基于BLE NDP期间的广告事件和扫描事件的中国剩余定理(CRT)得出的。此外,还建立了一个真实的测试平台来测量能耗。测量和实验结果揭示了平均能耗与关键参数之间的关系。在此模型的基础上,提出了有关BLE网络配置的有益指南,以帮助选择适当的参数来优化给定IoT应用程序的功耗。

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