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Experimental verification of a distributed computing strategy for structural health monitoring

机译:结构健康监测分布式计算策略的实验验证

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A flexibility-based distributed computing strategy (DCS) for structural health monitoring (SHM) has recently been proposed which is suitable for implementation on a network of densely distributed smart sensors. In that approach, a hierarchical strategy is proposed in which adjacent smart sensors are grouped together to form sensor communities. Structural health monitoring is done without relying on central data acquisition and processing. The main purpose of this paper is to experimentally verify this flexibility-based DCS approach. The damage locating vector method that forms foundation of the DCS approach is reviewed. An overview of the DCS approach is presented. This flexibility-based approach is then experimentally verified employing a 5.6 m long three-dimensional truss structure. To simulate damage in the structure, the original truss members are replaced by ones with a reduced cross section. Both single and multiple damage scenarios are studied. Experimental results show that the DCS approach can successfully detect the damage at local elements using only locally measured information.
机译:最近提出了一种用于结构健康监测(SHM)的基于灵活性的分布式计算策略(DCS),适用于在密集分布的智能传感器网络上实施。在该方法中,提出了一种分层策略,其中相邻的智能传感器被分组在一起以形成传感器社区。在不依赖于中央数据采集和处理的情况下进行结构健康监测。本文的主要目的是通过实验地验证基于灵活性的DCS方法。综述了DCS方法形成基础的损伤定位载体方法。提出了DCS方法的概述。然后通过实验验证这种基于灵活性的方法采用5.6米长的三维桁架结构。为了模拟结构中的损坏,原始桁架成员被带有减少的横截面所取代。研究了单一和多次损坏方案。实验结果表明,DCS方法可以仅使用本地测量信息成功检测局部元素的损坏。

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