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Ride comfort in commercial aircraft during formation flight using conventional flight control

机译:使用传统的飞行控制在地层航班期间乘坐商用飞机的舒适度

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This paper presents the simulation and evaluation of ride comfort in large commercial airliners flying in formation using conventional fly-by-wire flight control systems. The ride comfort in formation aircraft is influenced by disturbance loads due to turbulence and the trailing vortex of a leader aircraft as well as by compensatory control inputs produced by the pilot and flight control laws. A conventional Boeing B747-100 simulation model is augmented with formation flight effects and a fly-by-wire flight control model. Simulation results of the accelerations experienced at different locations in the trailing aircraft are presented, along with an analysis and evaluation of the associated effects of vibrations on comfort and motion sickness incidence. It was concluded that the vibration magnitudes do not differ much between aircraft in isolated flight and formation flight under the same conditions. For both aircraft, a seating location at the front of the aircraft is more comfortable than one at the back of the aircraft.
机译:本文介绍了使用传统的飞行线飞行控制系统在形成的大型商业班车中乘坐舒适的仿真和评估。由于湍流和领导飞机的拖尾涡流以及由飞行员和飞行控制法产生的补偿控制输入,地层飞行器的速度受到干扰载荷的影响。传统的波音B747-100仿真模型与地层飞行效应和循环飞行控制模型增强。展示了落后飞机在不同位置所经历的加速度的仿真结果,同时分析和评估振动对舒适性和运动疾病发病率的相关影响。得出结论是,在相同条件下,孤立的飞行和地层飞行中的飞机之间的振动大小没有多大。对于两架飞机,飞机前部的座位位置比飞机背面的座位更舒适。

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