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An Innovative Structural Health Monitoring System for Large Transmission Towers Based on GPS

机译:基于GPS的大型传动塔创新结构健康监测系统

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In this paper, we propose an innovative structural health monitoring (SHM) system for large transmission towers that are frequently subjected to strong winds. The system is based on the strategy of using a static force equilibrium equation to calculate the whole structure's real-time stress distribution according to its real-time behavior, as captured by the global positioning system (GPS). The reason for adopting this approach is that large transmission towers are fundamentally quasi-static structures and they are not prone to resonance under wind excitations. A case study is used to present the SHM system, then its effectiveness is validated by comparing the simulated SHM results with the exact solution obtained by a realistic time-history dynamic analysis. Additionally, we discuss the use of a new reliability analysis method based on the Ditlevsen's bounds to assess the real-time structural conditions.
机译:在本文中,我们提出了一种创新的结构健康监测(SHM)系统,用于频繁受到强风的大型传动塔。 该系统基于使用静态力平衡方程的策略根据其实时行为计算整个结构的实时应力分布,如全球定位系统(GPS)所捕获的那样。 采用这种方法的原因是大型传动塔基本上是准静态结构,并且它们在风激发下不容易产生共振。 案例研究用于呈现SHM系统,然后通过将模拟的SHM结果与通过现实时间历史动态分析获得的精确解决方案进行比较来验证其有效性。 此外,我们讨论了基于DITLEVSEN的界限的新可靠性分析方法来评估实时结构条件。

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