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首页> 外文期刊>CEAS Aeronautical Journal >Method for designing multi-input system identification signals using a compact time-frequency representation
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Method for designing multi-input system identification signals using a compact time-frequency representation

机译:使用紧凑的时频表示来设计多输入系统识别信号的方法

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摘要

A flight test campaign for system identification is a costly and time-consuming task. Models derived from wind tunnel experiments and CFD calculations must be validated and/or updated with flight data to match the real aircraft stability and control characteristics. Classical maneuvers for system identification are mostly one-surface-at-a-time inputs and need to be performed several times at each flight condition. Various methods for defining very rich multi-axis maneuvers, for instance based on multisine/sum of sines signals, already exist. A new design method based on the wavelet transform allowing the definition of multi-axis inputs in the time-frequency domain has been developed. The compact representation chosen allows the user to define fairly complex maneuvers with very few parameters. This method is demonstrated using simulated flight test data from a high-quality Airbus A320 dynamic model. System identification is then performed with this data, and the results show that aerodynamic parameters can still be accurately estimated from these fairly simple multi-axis maneuvers.
机译:用于系统识别的飞行测试运动是一种昂贵且耗时的任务。必须通过飞行数据验证和/或更新来自风洞实验和CFD计算的模型,以匹配真正的飞机稳定性和控制特性。用于系统识别的古典演习主要是一个表面上的输入,并且需要在每个飞行条件下执行多次。用于定义非常丰富的多轴动作的方法,例如基于多程度/凸片信号,已经存在。已经开发了一种基于小波变换的新设计方法,允许在时频域中定义多轴输入的定义。所选择的紧凑型表示允许用户使用很少的参数定义相当复杂的操作。使用来自高质量空中用车A320动态模型的模拟飞行测试数据来证明该方法。然后利用该数据进行系统识别,结果表明,仍然可以从这些相当简单的多轴操纵中准确地估计空气动力学参数。

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