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Maximum a posteriori probability estimation for localizing damage using ultrasonic guided waves

机译:使用超声导波定位损伤的最大后验概率估计

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Presented is an approach to damage localization for guided wave structural health monitoring (GWSHM) in plate-like structures. In this mode of SHM, transducers excite and sense guided waves in order to detect and characterize the presence of damage. The premise of the presented localization approach is simple: use as the estimated damage location the point on the structure with the maximum a posteriori probability (MAP) of being the location of damage (i.e., the most probable location given a set of sensor measurements). This is accomplished by constructing a minimally-informed statistical model of the GWSHM process. Parameters of the model which are unknown, such as scattered wave amplitude, are assigned non-informative Bayesian prior distributions and averaged out of the a posteriori probability calculation. Using an ensemble of measurements from an instrumented plate with stiffening stringers, the performance of the MAP estimate is compared to that of what were found to be the two most effective previously reported algorithms. The MAP estimate proved superior in nearly all test cases and was particularly effective in localizing damage using very sparse arrays of as few as three transducers.
机译:提出了一种在板状结构中进行导波结构健康监测(GWSHM)的损伤定位方法。在SHM的这种模式下,换能器激发并感应导波,以便检测和表征损坏的存在。所提出的定位方法的前提很简单:将结构上具有最大后验概率(MAP)的点作为损坏的位置(即,在一组传感器测量值下最可能的位置)用作估计的损坏位置。这是通过构建GWSHM过程的信息最少的统计模型来完成的。为模型的未知参数(例如散射波幅度)分配非信息性贝叶斯先验分布,并从后验概率计算中取平均值。使用来自仪表板的带有加劲肋的整体测量结果,将MAP估计的性能与之前发现的两种最有效的算法的性能进行比较。 MAP估计值在几乎所有测试案例中都被证明是优越的,并且对于使用少至三个换能器的非常稀疏的阵列来定位损坏特别有效。

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