飞机参数识别的控制器输入面结果纵向约定Matra配置

Eries Bagita Jayanti, Novita Atmasari, H. Mardikasari, Ardian Rizaldi, Fuad Surastyo Pranoto, S. Wibowo
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引用次数: 0

摘要

参数辨识是一个获取物体运动动力学真实特征并据此建立物体动力学模型的过程,具有很高的有效性和准确性。建模过程通常使用飞机输入数据和现有导航数据记录的结果进行。根据数据,采用简单最小二乘法估计模型参数。在本研究中,通过改变控制场的挠度输入和仿真时间来进行仿真。纵向尺寸的输入是电梯控制场的挠度。在海盗船a - 7a飞机上进行纵向参数辨识的结果表明,3-2-1输入方式的误差值比采用双重输入和脉冲输入方式的误差值要小。这表明在给定的输入中,3-2-1的输入形式最适合纵向尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pengaruh Masukan Kendali Terhadap Hasil Identifikasi Parameter Pesawat Udara Konfigurasi Konvensional Matra Terbang Longitudinal
Parameter identification is a process to get real characteristics of the motion dynamics of an object which can then be used to build the dynamics model of the object, which has a very high level of validity and accuracy. The modeling process is usually carried out using aircraft input data and the results of existing navigation data recording. From the data, the model parameters are estimated using the simple least square method. In this study, the simulation was carried out by varying the deflection input in the control field and simulation time. The input given to the longitudinal dimension is the deflection of the elevator control field. The results of parameter identification in the Corsair A-7A plane in the longitudinal dimension indicate that the input form 3-2-1 has a smaller error value than using doublet and pulse inputs. This shows that the input form 3-2-1 is most suitable for the longitudinal dimension among the given inputs.
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