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Outer-Loop Control Design and Simulation Handling Qualities Assessment for a Coaxial-Compound Helicopter and Tiltrotor

机译:外环控制设计与仿真处理轴复合直升机和倾斜仪的算法评估

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This paper describes the development of full flight envelope dynamic inversion outer-loop control laws used to control airspeed and flight path for two Future Vertical Lift-relevant rotorcraft configurations-a lift offset coaxial helicopter with a pusher propeller and a tiltrotor. The outer-loop control laws for both aircraft include a control allocation scheme to account for redundant controls and reduce pilot workload. A piloted simulation experiment was conducted at the Penn State Flight Simulator facility using a series of high-speed handling qualities demonstration maneuvers to evaluate the handling qualities of the control laws. Overall, the outer-loop control laws for both coaxial-pusher and tiltrotor aircraft were assigned Level 1 handling qualities for the Break Turn and High-Speed Acceleration/Deceleration tasks, and reduced pilot workload over previously developed inner-loop control laws. The outer-loop control laws also improved performance and reduced pilot workload in a formation flying task developed for this experiment. The coaxial-pusher outer-loop control laws received borderline Level I/Level 2 ratings for the Pitch Attitude Capture and Hold and Sum-of-Sines Tracking tasks, while the tiltrotor outer-loop control laws (with their increased value of pitch attitude dropback) received Level 2 ratings.
机译:本文介绍了用于控制空速和飞行路径的全飞行信封动态反转外环控制法的开发,用于控制两个未来的垂直提升相关的旋电手术配置 - 带有推动器螺旋桨的升降机同轴直升机和倾斜轿厢。两个飞机的外环控制法包括控制分配方案,以解释冗余控制并降低导频工作量。使用一系列高速处理质量演示机动演示机组在宾夕法尼亚州立飞行模拟器设施进行了一项试验模拟实验,以评估控制法的处理质量。总体而言,同轴推动器和倾斜飞机的外环控制规律被指定了分支转弯和高速加速/减速任务的1级处理质量,并降低了先前开发的内部环路控制法的导频工作量。外环控制法在为该实验开发的地层飞行任务中还提高了性能和降低的导频工作量。同轴推动器外环控制定律接收到横向级别I /级别2的距离姿态捕获和保持和均线跟踪任务,而TiltrotOR外环控制法(其增加的音高姿态下降)收到2级别的评级。

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