A method for reconstructing the dynamic displacement of floating structures based on acceleration measurements and comparison with data-reconstruction techniques.

Shujian Gao, Xi Chen, Zewen Pan, Zhe Tian, Fushun Liu
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Abstract

Accurately measuring the dynamic response in marine structures is crucial for ensuring service safety. Here we developed a method for reconstructing the dynamic displacement of floating structures based on acceleration measurements, addressing the challenges posed by the limitations of non-contact measurement devices due to the absence of fixed reference points in marine environments. This method avoids the issues of transition and low-frequency component loss typically encountered in integration-based reconstruction methods by the precise removal of drift terms, while achieving dual improvements in both reconstruction accuracy and efficiency compared to recent methods. A comprehensive comparison is made between the proposed method and widely used displacement measurement devices in physical model testing and field applications of offshore floating structures, validating the broad potential for applications requiring structural displacement measurement in complex marine environments.

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基于加速度测量的浮动结构动态位移重构方法以及与数据重构技术的比较。
准确测量海洋结构的动力响应对保证使用安全至关重要。在这里,我们开发了一种基于加速度测量重建浮动结构动态位移的方法,解决了由于海洋环境中缺乏固定参考点而导致非接触式测量设备的局限性所带来的挑战。该方法通过精确去除漂移项,避免了基于积分的重建方法通常会遇到的过渡和低频分量损失问题,同时与现有方法相比,在重建精度和效率方面实现了双重提高。将该方法与海上浮式结构的物理模型测试和现场应用中广泛使用的位移测量装置进行了全面比较,验证了该方法在复杂海洋环境中需要进行结构位移测量的广泛应用潜力。
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