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Optimal sensor placement in structural health monitoring using discrete optimization

机译:使用离散优化在结构健康监测中优化传感器放置

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摘要

The objective of optimal sensor placement (OSP) is to obtain a sensor layout that gives as much information of the dynamic system as possible in structural health monitoring (SHM). The process of OSP can be formulated as a discrete minimization (or maximization) problem with the sensor locations as the design variables, conditional on the constraint of a given sensor number. In this paper, we propose a discrete optimization scheme based on the artificial bee colony algorithm to solve the OSP problem after first transforming it into an integer optimization problem. A modal assurance criterion-oriented objective function is investigated to measure the utility of a sensor configuration in the optimization process based on the modal characteristics of a reduced order model. The reduced order model is obtained using an iterated improved reduced system technique. The constraint is handled by a penalty term added to the objective function. Three examples, including a 27 bar truss bridge, a 21-storey building at the MIT campus and the 610 m high Canton Tower, are investigated to test the applicability of the proposed algorithm to OSP. In addition, the proposed OSP algorithm is experimentally validated on a physical laboratory structure which is a three-story two-bay steel frame instrumented with triaxial accelerometers. Results indicate that the proposed method is efficient and can be potentially used in OSP in practical SHM.
机译:最佳传感器放置(OSP)的目的是获得一种传感器布局,以在结构健康监测(SHM)中提供尽可能多的动态系统信息。 OSP的过程可以公式化为离散的最小化(或最大化)问题,其中传感器位置作为设计变量,以给定传感器数量的约束为条件。在本文中,我们提出了一种基于人工蜂群算法的离散优化方案,将OSP问题首先转换为整数优化问题后再进行求解。研究了基于模态保证准则的目标函数,以基于降阶模型的模态特征来测量传感器配置在优化过程中的效用。使用迭代改进的精简系统技术获得精简模型。通过添加到目标函数的惩罚项来处理约束。研究了三个实例,包括一个27巴的桁架桥,位于麻省理工学院校园的一栋21层建筑和高610 m的广州塔,以测试该算法对OSP的适用性。此外,提出的OSP算法在物理实验室结构上进行了实验验证,该物理结构是三层两托架钢制框架,并装有三轴加速度计。结果表明,该方法是有效的,可以在实际SHM中用于OSP。

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