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Predictive Models for Transient Loads of the Vertical Stabilizer of an Aircraft developed using Canonican Correlation Analision

机译:使用Canonican相关分析开发的飞机垂直稳定器瞬态载荷的预测模型

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摘要

Knowledge about loads occurring in the structure during aircraft operation is vital from the point of view of the damage tolerance approach to aircraft design. In the best-life scenario, such information could be available from a network of sensors, e.g. strain gauges, installed in the aircraft structure to measure local stresses. However, operational loads monitoring (OLM) systems are still not widely applied. Instead, what is available is a set of flight parameters, which by the laws of inertia and aerodynamics help determine the dominant part of loads acting on a given element. This paper discusses the canonical correlation analysis (CCA) as a method for selecting the flight parameters used to predict aircraft loads. CCA allows for the identification of both different modes of stress distribution as well as flight parameters which are best suited for their prediction. The paper presents the application of this method to identify loads acting on the vertical stabilizer of an aircraft.
机译:从对飞机设计的损害容忍方法的观点出发,对于在飞机运行期间结构中出现的载荷的知识至关重要。在最佳生活场景中,此类信息可以从传感器网络中获取,例如应变仪,安装在飞机结构中以测量局部应力。但是,操作负载监视(OLM)系统仍未得到广泛应用。相反,可用的是一组飞行参数,通过惯性定律和空气动力学定律可以帮助确定作用在给定元素上的载荷的主要部分。本文讨论规范相关分析(CCA)作为一种选择用于预测飞机负荷的飞行参数的方法。 CCA可以识别应力分布的不同模式以及最适合其预测的飞行参数。本文介绍了该方法在识别作用在飞机垂直稳定器上的载荷的应用。

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