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Preliminary Steps in Developing Rapid Aero Modeling Technology

机译:开发快速航空建模技术的初步步骤

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The Rapid Aero Modeling (RAM) approach is a method to efficiently and automatically obtain aerodynamic models during testing, significantly saving time and resources. Motivation for this technology results from demand for experimental efficiency and model fidelity that has increased with growing aircraft complexity and aerodynamic nonlinearities. These issues are typical in the responses presented by a class of vehicles categorized as Urban Air Mobility aircraft where many features from both airplane and rotorcraft are present. For UAM configurations, with typically many more factors than conventional aircraft, traditional test methods can lead to increased costs and missed interactions. RAM guides the test to obtain high-fidelity, statistically rigorous aircraft models, and the approach is applicable to computational, ground, or flight-test experiments. It combines concepts from Design of Experiment theory and Aircraft System Identification theory that allow the user the freedom to choose, in advance of the test, a specific level of fidelity typically, in terms of prediction error. RAM only collects data required to meet the user-specified fidelity and fidelity is only limited by the facility and test article capabilities. An initial wind tunnel test to support development of RAM was conducted to assess potential metrics, algorithms, and procedures. This paper presents results from initial tests for the development of RAM technology and highlights some of the unique features of RAM applied to a conventional configuration during a ground-based, static, wind-tunnel test.
机译:快速航空建模(RAM)方法是一种在测试过程中高效自动获取空气动力学模型的方法,可大大节省时间和资源。这项技术的动力来自对实验效率和模型逼真度的需求,随着飞机复杂性和空气动力学非线性的不断提高,对模型的逼真度也在不断提高。这些问题在归类为“城市空中机动”飞机的一类车辆提出的响应中很典型,这些飞机同时具有飞机和旋翼飞机的许多功能。对于UAM配置,通常具有比常规飞机更多的因素,传统的测试方法可能会导致成本增加和交互作用丢失。 RAM指导测试以获取高保真度,严格统计的飞机模型,该方法适用于计算,地面或飞行测试实验。它结合了“实验设计”理论和“飞机系统识别”理论中的概念,这些概念使用户可以自由地在测试之前根据预测误差选择特定级别的保真度。 RAM仅收集满足用户指定的保真度所需的数据,而保真度仅受设施和测试商品功能的限制。进行了初步的风洞测试以支持RAM的开发,以评估潜在的指标,算法和过程。本文介绍了针对RAM技术发展的初步测试结果,并重点介绍了在基于地面的静态风洞测试过程中,将RAM应用于常规配置的一些独特功能。

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