结构健康监测的连续波雷达技术

Alexander C. Amies, C. Pretty, G. Rodgers, J. Chase
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引用次数: 1

摘要

雷达是一种常用的技术,用于确定运动物体之间的瞬时距离。本文提出了一种调频连续波技术在结构健康监测中的应用。这种情况需要测量层间漂移比来确定对结构的破坏。任何结构健康监测系统都必须能够足够准确地检测层间位移,以确保检测到任何潜在的破坏事件。该技术发展的主要动机是消除当前漂移传感方法(如加速度计和线扫描相机)的局限性。仿真结果表明,在足够大的扫频带宽下,位移跟踪误差可低至实际位移的0.26%,最小可检测位移为0.1%。这些结果证明了硬件原型的进一步开发。
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A continuous wave radar technique for structural health monitoring
Radar is a technique commonly used to determine the instantaneous distance between moving objects. This paper proposes the application of a frequency-modulated continuous wave technique for the purpose of drift sensing in a structural health monitoring context. This context requires the measurement of interstorey drift ratios to determine the damage to a structure. Any structural health monitoring system must be able to detect interstorey displacement accurately enough to ensure that any potentially damaging events are detected. The primary motivation for the development of this technique is to negate the limitations of current drift sensing methods (such as accelerometers and line-scan cameras). The proposed system is simulated, and it is found that with sufficiently large frequency sweep bandwidth, errors in displacement tracking can be as low as 0.26% of the actual displacement, with a minimum detectable displacement of 0.1%. These results justify the further development of a hardware prototype.
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