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Moisture measurements in construction elements and other structures using Bluetooth Low Energy

机译:使用低功耗蓝牙在建筑元素和其他结构中进行水分测量

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Moisture measurements in construction elements and other structures using Bluetooth Low Energy During the last decade, the data transfer from long-term monitoring of data, recorded e. g. in structures and dams, was undergoing a challenge from cable connected sensors to Wireless Sensor Networks (WSN) [2]. The sensor networks shall act as early warning systems for the set-in of initiating damage processes or if, e. g., moisture penetrates a structural element or any massive structure (embankments, dykes, dams) that allow for adverse and damaging substances penetrating structural elements. During first feasibility tests we applied commercially available multifunctional sensors like a Bluetooth Low Energy (BLE) Module for investigation of the influence of moisture in a certain volume of building material on the received signal. The investigated parameters were the so-called Received Signal Strength Indicator (RSSI) of a Bluetooth Low Energy (BLE) Signal and the transmission power emitted by an embedded BLE-Module. The BLE-Module communicates with a mobile smart receiver as a tablet or a smartphone as s. c. SmartHub. The change of the RSS-Indicator is a measure for the damping as a result of changing moisture content in a structural element while the transmission power remains constant. While the BLE-Signal transfers a moist section in any material, eg. building material, the RSS-Indicator changes. After a successful feasibility study, a ZIM-project was confirmed, which was composed within the in the German Network MI4G (Modern Industry for Germany) between the Federal Institute for Materials Research and Testing (BAM) with the small enterprise LinTech GmbH, Berlin. The report presents first results and gives an outlook on further research activities.
机译:使用蓝牙低功耗技术在建筑元素和其他结构中进行水分测量在最近十年中,长期监控数据所产生的数据传输记录在案。 G。从电缆连接的传感器到无线传感器网络(WSN)[2],在结构和水坝中的应用正面临挑战。传感器网络应作为启动损坏过程的预警系统,或者在以下情况下作为预警系统:例如,水分会渗透到结构元件或任何大块结构(堤防,堤坝,大坝)中,这些结构或有害物质会渗透到结构元件中。在最初的可行性测试中,我们应用了诸如蓝牙低功耗(BLE)模块之类的市售多功能传感器来调查一定体积的建筑材料中水分对接收信号的影响。研究的参数是蓝牙低功耗(BLE)信号的所谓接收信号强度指示器(RSSI)和嵌入式BLE模块发出的发射功率。 BLE模块与移动智能接收器(如平板电脑)或智能手机(如s)通信。 C。 SmartHub。 RSS指示器的变化是对阻尼的一种度量,该变化是在传输功率保持恒定的同时,改变结构元件中水分含量的结果。 BLE信号会在任何材料中转移潮湿的部分,例如在建筑材料方面,RSS指示器会发生变化。在成功进行可行性研究后,确认了一个ZIM项目,该项目由联邦材料研究与测试学院(BAM)与小型企业LinTech GmbH,柏林之间的德国网络MI4G(德国现代工业)组成。该报告提出了初步结果,并对进一步的研究活动进行了展望。

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