Aguilar Sergio, Vidal Rafael, Gomez Carles
Universitat Politècnica de Catalunya/Fundació i2Cat, C/Esteve Terradas, 7, 08860 Castelldefels, Spain.
Sensors (Basel). 2017 Jan 23;17(1):159. doi: 10.3390/s17010159.
Bluetooth Low Energy (BLE) has gained very high momentum, as witnessed by its widespread presence in smartphones, wearables and other consumer electronics devices. This fact can be leveraged to carry out opportunistic sensor data collection (OSDC) in scenarios where a sensor node cannot communicate with infrastructure nodes. In such cases, a mobile entity (e.g., a pedestrian or a vehicle) equipped with a BLE-enabled device can collect the data obtained by the sensor node when both are within direct communication range. In this paper, we characterize, both analytically and experimentally, the performance and trade-offs of BLE as a technology for OSDC, for the two main identified approaches, and considering the impact of its most crucial configuration parameters. Results show that a BLE sensor node running on a coin cell battery can achieve a lifetime beyond one year while transferring around 10 Mbit/day, in realistic OSDC scenarios.
低功耗蓝牙(BLE)发展势头迅猛,在智能手机、可穿戴设备及其他消费电子设备中广泛应用便是明证。这一事实可用于在传感器节点无法与基础设施节点通信的场景中进行机会性传感器数据收集(OSDC)。在这种情况下,配备了支持BLE设备的移动实体(如行人或车辆)在两者处于直接通信范围内时,可收集传感器节点获取的数据。在本文中,我们通过分析和实验,针对两种主要的既定方法,并考虑其最关键配置参数的影响,对BLE作为一种用于OSDC的技术的性能和权衡进行了表征。结果表明,在实际的OSDC场景中,使用硬币电池供电的BLE传感器节点在每天传输约10兆比特数据的情况下,使用寿命可超过一年。