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An Investigation on Pervasive Technologies for IoT-based Thermal Monitoring

机译:基于物联网的热监控普及技术研究

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摘要

Indoor thermal monitoring is a crucial requirement for home automation, which fits inside the ever-growing Internet of Things (IoT) paradigm. The IoT ecosystem aims at connecting every device exploiting specific functions, deployed in a particular place, in order to give the chance to the users to monitor and/or control some aspects of their life, or to demand this task to a proper software. In the thermal monitoring context, IoT provides new opportunities for a dense and/or large-scale distribution of sensors, which have to gather data in order to effectively control the Heating, Ventilation and Air Conditioning (HVAC) system. Several wireless technologies can be exploited for this scope. However, they involve different benefits and drawbacks. In particular, this study is focused on Radio Frequency Identification (RFID) and Bluetooth®, which represent two well-known wireless technological standards used by commercial electronics but suitable also for pervasive IoT systems. These technologies are discussed and compared from several points of view, i.e., flexibility, reliability, battery life and cost of the system. A theoretical analysis highlights their benefits for the application context and evaluates their suitability to dense and large-scale monitoring systems. The theoretical results are supported by an experimental analysis based on the implementation and test of two different systems, one using RFID and the other using Bluetooth technology.
机译:室内热监测是家庭自动化的关键要求,它适合不断增长的物联网(IoT)范式。物联网生态系统旨在将利用部署在特定位置的特定功能的每个设备连接起来,以使用户有机会监视和/或控制其生活的某些方面,或要求此任务使用合适的软件。在热监控环境中,物联网为密集和/或大规模分布的传感器提供了新的机会,这些传感器必须收集数据才能有效地控制加热,通风和空调(HVAC)系统。可以将多种无线技术用于此范围。但是,它们涉及不同的优点和缺点。尤其是,这项研究的重点是射频识别(RFID)和Bluetooth®,它们代表了商用电子设备使用的两个众所周知的无线技术标准,但也适用于普及的IoT系统。从多种角度讨论和比较了这些技术,即灵活性,可靠性,电池寿命和系统成本。理论分析突出了它们在应用环境中的优势,并评估了它们对密集和大型监控系统的适用性。基于两个不同系统的实现和测试的实验分析为理论结果提供了支持,一个使用RFID,另一个使用蓝牙技术。

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