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Damage Characterization Method for Structural Health Management Using Reduced Number of Sensor Inputs

机译:减少传感器输入数量的结构健康管理损伤表征方法

摘要

The development of validated multidisciplinary Integrated Vehicle Health Management (IVHM) tools, technologies, and techniques to enable detection, diagnosis, prognosis, and mitigation in the presence of adverse conditions during flight will provide effective solutions to deal with safety related challenges facing next generation aircraft. The adverse conditions include loss of control caused by environmental factors, actuator and sensor faults or failures, and damage conditions. A major concern in these structures is the growth of undetected damage (cracks) due to fatigue and low velocity foreign impacts that can reach a critical size during flight, resulting in loss of control of the aircraft. Hence, development of efficient methodologies to determine the presence, location, and severity of damage in critical structural components is highly important in developing efficient structural health management systems.
机译:经过验证的多学科综合车辆健康管理(IVHM)工具,技术和方法的开发,可以在飞行过程中出现不利条件时进行检测,诊断,预后和缓解,这将为应对下一代飞机面临的与安全相关的挑战提供有效的解决方案。不利条件包括由于环境因素,执行器和传感器故障或故障以及损坏条件而导致的控制失控。这些结构中的主要问题是由于疲劳和低速外来冲击而导致的未察觉到的损坏(裂纹)的增长,这种外来冲击在飞行过程中可能达到临界尺寸,从而导致飞机失控。因此,开发有效的方法来确定关键结构组件中损坏的存在,位置和严重性对开发有效的结构健康管理系统非常重要。

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