Bell V-280 System Identification and Model Validation with Flight Test Data using the Joint Input-Output Method

Caitlin Berrigan, Paul Ruckel, Bell, Mark J. S. Lopez, J. Prasad
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引用次数: 4

Abstract

With modern aerospace vehicle configurations, highly-coupled redundant flight control surfaces are becoming standard practice. For such vehicles, traditional System Identification (SID) methods may not accurately capture the individual contributions of effectors to the vehicle bare-airframe response. A Joint Input-Output (JIO) methodology was used to estimate the control power for each highly-correlated roll effector of the Bell V-280 hover configuration. The methodology was demonstrated using flight test data, where the identification results were compared to a high-fidelity hardware-in-the-loop simulation in the V-280 System Integration Lab.
使用联合输入-输出方法的贝尔V-280系统识别和飞行试验数据模型验证
随着现代航空航天飞行器的配置,高耦合冗余飞行控制面正在成为标准做法。对于此类车辆,传统的系统识别(SID)方法可能无法准确地捕捉到效应器对车辆裸机身响应的单个贡献。采用联合输入-输出(JIO)方法估计了贝尔V-280悬停构型中每个高度相关的滚转效应的控制能力。该方法使用飞行测试数据进行了验证,其中识别结果与V-280系统集成实验室的高保真硬件在环仿真进行了比较。
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