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Input Excitation Techniques for Aerodynamic Derivatives Estimation of Highly Augmented Fighter Aircraft

机译:高度增强战斗机飞机气动导数估计的输入激励技术

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This paper presents the results of an investigation related to the estimation of lateral-directional aerodynamic derivatives of highly augmented and advanced fighter aircraft from the flight like response data. Different types of pilot inputs are used to generate aircraft response data in the engineer-in-loop flight simulator to determine which input excitation flight provide the most accurate estimates of aircraft stability and control derivatives. Also, MATILABI SIMULINK-based simulation platform is used to generate aircraft response with single-surface excitation to evaluate the usefulness of the method for stability and control derivatives estimation. The maximum likelihood estimation, based on output error utilisation technique is used to estimate the derivatives from the aircraft simulation response data. The results indicate that accuracy of the estimated derivatives improve with persistence excitation and single-surface excitation.
机译:本文介绍了一项研究结果,该研究结果与类似飞行数据的飞行估算高度增强和先进战斗机的横向气动派生有关。在回路工程师飞行模拟器中,使用了不同类型的飞行员输入来生成飞机响应数据,以确定哪个输入激励飞行可以提供对飞机稳定性和控制导数的最准确估计。同样,基于MATILABI SIMULINK的仿真平台可用于生成具有单面激励的飞机响应,以评估该方法对稳定性和控制导数估计的有效性。基于输出误差利用技术的最大似然估计用于从飞机模拟响应数据估计导数。结果表明,所估计导数的准确性随持久性激励和单面激励而提高。

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