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A sparse sensor network topologized for cylindrical wave-based identification of damage in pipeline structures

机译:为基于圆柱波的管道结构损伤识别而建立的稀疏传感器网络

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摘要

A sparse sensor network, based on the concept of semi-decentralized and standardized sensing, is developed, to actively excite and acquire cylindrical waves for damage identification and health monitoring of pipe structures. Differentiating itself from conventional 'ring-style' transducer arrays which attempt to steer longitudinal axisymmetric cylindrical waves via transducer synchronism, this sparse sensor network shows advantages in some aspects, including the use of fewer sensors, simpler manipulation, quicker configuration, less mutual dependence among sensors, and an improved signal-to-noise ratio. The sparse network is expanded topologically, aimed at eliminating the presence of 'blind zones' and the challenges associated with multi-path propagation of cylindrical waves. Theoretical analysis is implemented to comprehend propagation characteristics of waves guided by a cylindrical structure. A probability-based diagnostic imaging algorithm is introduced to visualize damage in pixelated images in an intuitive, prompt, and automatic manner. A self-contained health monitoring system is configured for experimental validation, via which quantitative identification of mono- and multi-damage in a steel cylinder is demonstrated. The results highlight an expanded sensing coverage of the sparse sensor network and its enhanced capacity of acquiring rich information, avoiding the cost of augmenting the number of sensors in a sensor network.
机译:开发了一种基于半分散和标准化传感概念的稀疏传感器网络,以主动激发和获取圆柱波,以用于管道结构的损伤识别和健康监测。这种稀疏的传感器网络与传统的“环形”传感器阵列(试图通过传感器同步来引导纵向轴对称圆柱波)有所不同,它在某些方面显示出了优势,包括使用更少的传感器,更简单的操作,更快的配置以及更少的相互依赖。传感器,并改善了信噪比。稀疏网络在拓扑上进行了扩展,旨在消除“盲区”的出现以及与圆柱波多径传播相关的挑战。进行理论分析以理解由圆柱结构引导的波的传播特性。引入了基于概率的诊断成像算法,以直观,迅速和自动的方式可视化像素化图像中的损坏。配置了独立的健康监控系统以进行实验验证,通过该系统可以定量识别钢瓶中的单损坏和多损坏。结果表明,稀疏传感器网络的传感范围得到了扩展,并且其获取丰富信息的能力得到了增强,从而避免了增加传感器网络中传感器数量的成本。

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