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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >QFT force loop design for the aerodynamic load simulator
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QFT force loop design for the aerodynamic load simulator

机译:气动载荷模拟器的QFT力环设计

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A dynamic load simulator which can reproduce on-ground the aerodynamic hinge moment of a control surface is an essential rig for conducting performance and stability tests of aircraft actuation systems. The hinge moment varies widely over the flight envelope, depending on the specific flight condition and maneuvering status. To replicate the wide spectrum of this hinge moment variation within some accuracy hounds, a force controller is designed based on the Quantitative Feedback Theory (QFT). A dynamic model of the load actuation system Is derived, and compared with experimental results. Through this comparison, a nominal model of the load actuation system with some uncertainty bounds is developed. The efficacy of the QFT force controller is verified by a numerical simulation, in which combined aircraft dynamics, flight control law and hydraulic actuation system dynamics of the aircraft control surface are considered
机译:可以在地面上复制控制面的气动铰链力矩的动态载荷模拟器是进行飞机驱动系统性能和稳定性测试的必要装备。取决于具体的飞行条件和操纵状态,铰链力矩在整个飞行包线中变化很大。为了在某​​些精度范围内复制这种铰接力矩变化的广谱范围,基于定量反馈理论(QFT)设计了一种力控制器。推导了负载驱动系统的动力学模型,并将其与实验结果进行了比较。通过该比较,建立了具有一些不确定性界限的负载致动系统的标称模型。通过数值模拟验证了QFT力控制器的有效性,其中考虑了飞机控制面的飞行器动力学,飞行控制律和液压致动系统动力学的组合

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