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Bridge Deflection Monitoring using Small, Low-Cost Radar Sensors

机译:使用小型低成本雷达传感器的桥梁偏转监控

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The ability to accurately measure bridge deflections is an important aspect of bridge monitoring and maintenance, both in the US and internationally. Static deck deflections are used to provide load ratings while dynamic deflection measurements may be used to track changes in the dynamic behavior of the bridge due to environmental, loading, and condition changes. Directly measuring bridge deflection has proven challenging, requiring either a fixed reference point or the use of non-contact laser sensors. This presentation introduces wireless, continuous wave radar sensors developed for bridge monitoring applications. The small, bridge-mounted sensors provide a practical and low-cost solution for a range of measurement conditions. As the bridge moves, the radars send a continuous wave that is reflected by a stationary target (either the ground below or a fixed transponder, depending on the application). The reflected signal contains the information necessary to extract the bridge motion. While the theoretical operation is straightforward, there are challenges associated with signal demodulation and data processing in the presence of noise due to interference or long detection ranges. Characterization of the static and dynamic performance of the radar is presented, as well as guidelines for their practical application. The audience of this presentation will be both researchers and practitioners working to improve bridge inspection and monitoring practices. Specifically, the audience will learn about a novel technology to improve bridge testing, gain an understanding of the advantages and challenges of applying radar technology to structural monitoring, and be presented with strategies for achieving a network of distributed radar sensors to capture bridge responses.
机译:准确测量桥梁偏转的能力是美国和国际桥梁监测和维护的一个重要方面。静态甲板偏转被用来提供额定载荷而动态偏转测量可以被用来跟踪在桥的动态行为由于环境,装载和条件的变化的变化。直接测量桥梁偏转已被证明具有挑战性,需要固定的参考点或使用非接触式激光传感器。该演示介绍了为桥梁监控应用开发的无线,连续波雷达传感器。小型桥接式传感器提供了一系列测量条件的实用和低成本的解决方案。当桥移动时,雷达通过静止目标(下面的地面或固定的应答器)发送连续波,这取决于应用)。反射信号包含提取桥接运动所需的信息。虽然理论操作很简单,但由于干扰或长检测范围的噪声存在下的信号解调和数据处理存在挑战。提出了雷达的静态和动态性能的表征,以及其实际应用的指导。本演示文稿的观众将成为研究人员和从业者,以改善桥梁检查和监测实践。具体而言,观众将学习新技术来改善桥梁测试,了解将雷达技术应用于结构监测的优点和挑战,并呈现用于实现分布式雷达传感器网络以捕获桥梁响应的策略。

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