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Detection of damage in truss structures using Simplified Dolphin Echolocation algorithm based on modal data

机译:基于模态数据的简化海豚回声定位算法检测桁架结构中的损伤

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Nowadays, there are two classes of methods for damage detection in structures consisting of static and dynamic. The dynamic methods are based on studying the changes in structure's dynamic characteristics. The theoretical basis of this method is that damage causes changes in dynamic characteristics of structures. The dynamic methods are divided into two categories: signal based and modal based. The modal based methods utilize the modal properties consisting of natural frequencies, modal damping and mode shapes. As the modal properties are sensitive to changes in the structure, these can be used for detecting the damages. In this study, using dynamic method and modal based approach (natural frequencies and mode shapes), the objective function is formulated. Then, detection of damages of truss structures is addressed by using Simplified Dolphin Echolocation algorithm and solving inverse optimization problem. Many scenarios are used to simulate the damages. To demonstrate the ability of the algorithm, different truss structures with several multiple elements scenarios are tested using a few runs. The influence of the two different levels of noise in the modal data for these scenarios is also considered. The last example of this article is investigated using a different mutation. This mutation obtains the exact answer with fewer loops and population by limited computational effort.
机译:如今,有两种类型的用于结构损坏的检测方法,包括静态和动态。动力学方法是基于对结构动力学特性变化的研究。这种方法的理论基础是破坏会引起结构动力特性的变化。动态方法分为两类:基于信号的和基于模态的。基于模态的方法利用了由固有频率,模态阻尼和模态形状组成的模态特性。由于模态特性对结构的变化敏感,因此可以将其用于检测损坏。在这项研究中,使用动态方法和基于模态的方法(固有频率和模态形状)来制定目标函数。然后,利用简化的海豚回声定位算法并解决逆优化问题,解决了桁架结构损伤的检测问题。许多场景用于模拟损害。为了演示该算法的能力,使用几次运行测试了具有多个多元素方案的不同桁架结构。对于这些情况,还应考虑模态数据中两种不同噪声水平的影响。本文的最后一个示例使用其他突变进行了研究。通过有限的计算工作量,此突变可以以较少的循环和总体获得准确的答案。

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