Department of Information Engineering and Mathematical Sciences, University of Siena, 53100 Siena, Italy.
Sensors (Basel). 2022 Dec 13;22(24):9794. doi: 10.3390/s22249794.
In this paper, an IoT sensor node, based on smart Bluetooth low energy (BLE), for the health monitoring of artworks and large wooden structures is presented. The measurements from sensors on board the node are collected in real-time and sent to a remote gateway. The sensor node allows for the monitoring of environmental parameters, in particular, temperature and humidity, with accurate and robust integrated sensors. The developed node also embeds an accelerometer, which also allows other mechanical quantities (such as tilt) to be derived. This feature can be exploited to perform structural monitoring, exploiting the processing of data history to detect permanent displacements or deformations. The node is triggered by acceleration transients; therefore, it can also generate alarms related to shocks. This feature is crucial, for instance, in the case of transportation. The developed device is low-cost and has very good performance in terms of power consumption and compactness. A reliability assessment showed excellent durability, and experimental tests proved very satisfactory robustness against working condition variations. The presented results confirm that the developed device allows for the realization of pervasive monitoring systems, in the context of the IoT paradigm, with sensor nodes devoted to the monitoring of each artwork present in a museum or in a church.
本文提出了一种基于智能蓝牙低能(BLE)的物联网传感器节点,用于艺术品和大型木结构的健康监测。节点上的传感器测量数据实时采集并发送到远程网关。传感器节点可以监测环境参数,特别是温度和湿度,具有精确和可靠的集成传感器。开发的节点还嵌入了一个加速度计,也可以导出其他机械量(如倾斜)。此功能可用于执行结构监测,利用数据历史记录的处理来检测永久位移或变形。节点由加速度瞬态触发;因此,它还可以生成与冲击相关的警报。例如,在运输过程中,此功能非常关键。该开发设备成本低,在功耗和紧凑性方面性能非常出色。可靠性评估显示出极佳的耐用性,实验测试证明对工作条件变化具有非常令人满意的鲁棒性。所呈现的结果证实,所开发的设备允许在物联网范例的背景下实现普遍监测系统,使用专门用于监测博物馆或教堂中每一件艺术品的传感器节点。