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Aircraft System Identification from Multisine Inputs and Frequency Responses

机译:从多正弦输入和频率响应识别飞机系统

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A frequency-domain approach is described for estimating parameters, such as stability and control derivatives, in aircraft flight dynamic models from measured input and output data. The approach uses orthogonal phase-optimized multisines for moving the aircraft control effectors, Fourier analysis for computing multiple-input multiple-output frequency responses, and a maximum likelihood estimator called frequency response error (FRE) for determining values and uncertainties of the model parameters. The approach is demonstrated using flight test data for two subscale airplanes: the T-2 generic transport model and the X-56A aeroelastic demonstrator. Results and comparisons with the output-error method indicated that the approach produced accurate estimates of stability and control derivatives and their uncertainties from flight test data.
机译:描述了一种频域方法,用于根据测量的输入和输出数据估算飞机飞行动力学模型中的参数,例如稳定性和控制导数。该方法使用正交相位优化的多正弦波来移动飞机控制效应器,使用傅立叶分析来计算多输入多输出频率响应,并使用一种称为频率响应误差(FRE)的最大似然估计器来确定模型参数的值和不确定性。通过使用两个小型飞机的飞行测试数据证明了该方法:T-2通用运输模型和X-56A气动弹性演示器。结果和与输出误差方法的比较表明,该方法可从飞行测试数据中准确地估计出稳定性和控制导数及其不确定性。

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