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User Selection Criteria of Airspace Designs in Flexible Airspace Management

机译:灵活空域管理中空域设计的用户选择标准

摘要

A method for identifying global aerodynamic models from flight data in an efficient manner is explained and demonstrated. A novel experiment design technique was used to obtain dynamic flight data over a range of flight conditions with a single flight maneuver. Multivariate polynomials and polynomial splines were used with orthogonalization techniques and statistical modeling metrics to synthesize global nonlinear aerodynamic models directly and completely from flight data alone. Simulation data and flight data from a subscale twin-engine jet transport aircraft were used to demonstrate the techniques. Results showed that global multivariate nonlinear aerodynamic dependencies could be accurately identified using flight data from a single maneuver. Flight-derived global aerodynamic model structures, model parameter estimates, and associated uncertainties were provided for all six nondimensional force and moment coefficients for the test aircraft. These models were combined with a propulsion model identified from engine ground test data to produce a high-fidelity nonlinear flight simulation very efficiently. Prediction testing using a multi-axis maneuver showed that the identified global model accurately predicted aircraft responses.
机译:解释和演示了一种从飞行数据中有效识别全局空气动力学模型的方法。一种新颖的实验设计技术被用于通过一次飞行机动获得一系列飞行条件下的动态飞行数据。多元多项式和多项式样条与正交化技术和统计建模指标一起使用,可以直接从飞行数据中直接完整地综合全局非线性空气动力学模型。来自小型双引擎喷气运输机的模拟数据和飞行数据被用来演示该技术。结果表明,可以使用一次操纵的飞行数据来准确识别全局多元非线性空气动力学依赖性。为测试飞机的所有六个无量纲力和力矩系数提供了飞行衍生的全球空气动力学模型结构,模型参数估计以及相关的不确定性。这些模型与从发动机地面测试数据确定的推进模型相结合,可以非常高效地产生高保真非线性飞行仿真。使用多轴机动进行的预测测试表明,所识别的全局模型可以准确预测飞机的响应。

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