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Condition monitoring of concrete structures using wireless sensor networks and MEMS

机译:使用无线传感器网络和MEMS的混凝土结构的状态监测

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The inspection of building structures, especially bridges, is currently made by visual inspection. The few non-visual methodologies make use of wired sensor networks, which are relatively expensive, vulnerable to damage, and time consuming to install. Systems based on wireless sensor networks should be both cost efficient and easy to install, scalable and adaptive to different type of structures. Acoustic emission techniques are an additional monitoring method to investigate the status of a bridge or some of its components. It has the potential to detect defects in terms of cracks propagating during the routine use of structures. However, acoustic emissions recording and analysis techniques need powerful algorithms to handle and reduce the immense amount of data generated. These algorithms are developed on the basis of neural network techniques and -regarding localization of defects - by array techniques. Sensors with low price are essential for such monitoring systems to be accepted. Although the development costs of such a system are relatively high, the target price for the entire monitoring system will be several thousands Euro, depending on the size of the structure and the number of sensors necessary to cover the most important parts of the structure. Micro-Electro-Mechanical-Systems and hybrid sensors form the heart of Motes (network nodes). The network combined multi-hop data transmission techniques with efficient data pre-processing in the nodes. Using this technique, monitoring of large structures in civil engineering becomes very efficient including the sensing of temperature, moisture, strain and other data continuously. In this paper, the basic principles of a wireless monitoring system equipped with MEMS sensors is presented along with a first prototype. The authors work on details of network configuration, power consumption, data acquisition and data aggregation, signal analysis and data reduction is presented.
机译:目前通过目视检查进行建筑结构,尤其是桥梁的检查。少数非视觉方法使用有线传感器网络,它相对昂贵,容易受到损坏,并且安装耗时。基于无线传感器网络的系统应该是成本高效且易于安装,可伸缩和适应不同类型的结构。声发射技术是探讨桥梁或其一些组件的状态的额外监测方法。它有可能在常规使用结构期间传播的裂缝来检测缺陷。然而,声学排放记录和分析技术需要强大的算法来处理和减少产生的巨大数据量。这些算法是在神经网络技术的基础上开发的,并通过阵列技术 - 通过阵列技术进行缺陷的定位。价格低廉的传感器对于要接受的这种监控系统至关重要。虽然这种系统的开发成本相对较高,但整个监测系统的目标价格将是数千欧元,这取决于结构的大小和覆盖结构最重要的部分所需的传感器数量。微机电系统和混合传感器形成了电机的核心(网络节点)。网络组合多跳数据传输技术,节点中有效数据预处理。使用该技术,监测土木工程中的大结构变得非常有效,包括不断感应温度,湿度,应变和其他数据。在本文中,呈现了配备有MEMS传感器的无线监控系统的基本原理以及第一原型。作者介绍了网络配置,功耗,数据采集和数据聚集的细节,提出了信号分析和数据。

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