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Overview and Evaluation of Bluetooth Low Energy: An Emerging Low-Power Wireless Technology

机译:蓝牙低功耗概述和评估:新兴的低功耗无线技术

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摘要

Bluetooth Low Energy (BLE) is an emerging low-power wireless technology developed for short-range control and monitoring applications that is expected to be incorporated into billions of devices in the next few years. This paper describes the main features of BLE, explores its potential applications, and investigates the impact of various critical parameters on its performance. BLE represents a trade-off between energy consumption, latency, piconet size, and throughput that mainly depends on parameters such as connInterval and connSlaveLatency. According to theoretical results, the lifetime of a BLE device powered by a coin cell battery ranges between 2.0 days and 14.1 years. The number of simultaneous slaves per master ranges between 2 and 5,917. The minimum latency for a master to obtain a sensor reading is 676 μs, although simulation results show that, under high bit error rate, average latency increases by up to three orders of magnitude. The paper provides experimental results that complement the theoretical and simulation findings, and indicates implementation constraints that may reduce BLE performance.
机译:低功耗蓝牙(BLE)是一种新兴的低功耗无线技术,专为短距离控制和监视应用而开发,预计在未来几年内将被整合到数十亿个设备中。本文介绍了BLE的主要功能,探讨了其潜在应用,并研究了各种关键参数对其性能的影响。 BLE表示能耗,等待时间,微微网大小和吞吐量之间的折衷,而折衷主要取决于诸如connInterval和connSlaveLatency之类的参数。根据理论结果,由币形电池供电的BLE器件的寿命在2.0天到14.1年之间。每个主机同时从机的数量在2到5,917之间。主机获得传感器读数的最小等待时间为676μs,尽管仿真结果显示,在高误码率下,平均等待时间最多增加三个数量级。本文提供的实验结果可补充理论和仿真结果,并指出可能会降低BLE性能的实施约束。

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