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Performance Evaluation of Energy-Autonomous Sensors Using Power-Harvesting Beacons for Environmental Monitoring in Internet of Things (IoT)

机译:使用功率收集信标在物联网(IoT)中进行环境监控的能量自发传感器的性能评估

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摘要

Environmental conditions and air quality monitoring have become crucial today due to the undeniable changes of the climate and accelerated urbanization. To efficiently monitor environmental parameters such as temperature, humidity, and the levels of pollutants, such as fine particulate matter (PM2.5) and volatile organic compounds (VOCs) in the air, and to collect data covering vast geographical areas, the development of cheap energy-autonomous sensors for large scale deployment and fine-grained data acquisition is required. Rapid advances in electronics and communication technologies along with the emergence of paradigms such as Cyber-Physical Systems (CPSs) and the Internet of Things (IoT) have led to the development of low-cost sensor devices that can operate unattended for long periods of time and communicate using wired or wireless connections through the Internet. We investigate the energy efficiency of an environmental monitoring system based on Bluetooth Low Energy (BLE) beacons that operate in the IoT environment. The beacons developed measure the temperature, the relative humidity, the light intensity, and the CO2 and VOC levels in the air. Based on our analysis we have developed efficient sleep scheduling algorithms that allow the sensor nodes developed to operate autonomously without requiring the replacement of the power supply. The experimental results show that low-power sensors communicating using BLE technology can operate autonomously (from the energy perspective) in applications that monitor the environment or the air quality in indoor or outdoor settings.
机译:由于气候的不可否认的变化和城市化进程的加快,如今的环境条件和空气质量监测已变得至关重要。为了有效地监测环境参数,例如温度,湿度和污染物水平,例如空气中的细颗粒物(PM2.5)和挥发性有机化合物(VOC),并收集涵盖广阔地理区域的数据,需要用于大规模部署和细粒度数据采集的廉价能源自给传感器。电子和通信技术的飞速发展,以及诸如网络物理系统(CPS)和物联网(IoT)之类的范例的出现,导致了低成本传感器设备的发展,该传感器设备可以长时间无人值守运行并通过互联网使用有线或无线连接进行通信。我们研究了在物联网环境中运行的基于蓝牙低功耗(BLE)信标的环境监控系统的能效。所开发的信标可测量温度,相对湿度,光强度以及空气中的CO2和VOC含量。根据我们的分析,我们开发了有效的睡眠调度算法,该算法可以使开发的传感器节点自主运行,而无需更换电源。实验结果表明,使用BLE技术进行通信的低功耗传感器可以在监测室内或室外环境或空气质量的应用中自主运行(从能源角度出发)。

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