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An iterative method for damage identification of skeletal structures utilizing biconjugate gradient method and reduction of search space

机译:一种利用双共轭梯度法和减少搜索空间的骨架结构损伤识别的迭代方法

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摘要

This paper is devoted to proposing a new approach for damage detection of structures. In this technique, the biconjugate gradient method (BCG) is employed. To remedy the noise effects, a new preconditioning algorithm is applied. The proposed preconditioner matrix significantly reduces the condition number of the system. Moreover, based on the characteristics of the damage vector, a new direct search algorithm is employed to increase the efficiency of the suggested damage detection scheme by reducing the number of unknowns. To corroborate the high efficiency and capability of the presented strategy, it is applied for estimating the severity and location of damage in the well-known 31-member and 52-member trusses. For damage detection of these trusses, the time history responses are measured by a limited number of sensors. The results of numerical examples reveal high accuracy and robustness of the proposed method.
机译:本文致力于提出一种新的结构损伤检测方法。在此技术中,采用了双共轭梯度法(BCG)。为了纠正噪声影响,应用了一种新的预处理算法。所提出的预处理器矩阵显着减少了系统的条件数。此外,基于损伤向量的特征,采用了一种新的直接搜索算法,通过减少未知数来提高建议的损伤检测方案的效率。为了证实所提出策略的高效率和能力,将其用于估计众所周知的31构件和52构件桁架中损伤的严重程度和位置。为了检测这些桁架的损伤,可通过有限数量的传感器来测量时程响应。数值算例结果表明,该方法具有较高的准确性和鲁棒性。

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