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NASA Langley Distributed Propulsion VTOL Tilt-Wing Aircraft Testing, Modeling, Simulation, Control, and Flight Test Development

机译:NASA Langley分布式推进VTOL倾斜翼飞机测试,建模,模拟,控制和飞行测试开发

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Control of complex Vertical Take-Off and Landing (VTOL) aircraft traversing from hovering to wing born flight mode and back poses notoriously difficult modeling, simulation, control, and flight-testing challenges. This paper provides an overview of the techniques and advances required to develop the GL-10 tilt-wing, tilt-tail, long endurance, VTOL aircraft control system. The GL-10 prototype's unusual and complex configuration requires application of state-of-the-art techniques and some significant advances in wind tunnel infrastructure automation, efficient Design Of Experiments (DOE) tunnel test techniques, modeling, multi-body equations of motion, multi-body actuator models, simulation, control algorithm design, and flight test avionics, testing, and analysis. The following compendium surveys key disciplines required to develop an effective control system for this challenging vehicle in this on-going effort.
机译:复杂的垂直起降(VTOL)飞机从悬停过渡到机翼机载飞行模式并向后飞越,这对建模,仿真,控制和飞行测试提出了非常困难的挑战。本文概述了开发GL-10倾斜翼,倾斜尾翼,长寿命,VTOL飞机控制系统所需的技术和进步。 GL-10原型机的不寻常且复杂的配置要求应用最新技术,并在风洞基础设施自动化,高效的实验设计(DOE)隧道测试技术,建模,多体运动方程式,多体执行器模型,仿真,控制算法设计以及飞行测试航空电子设备,测试和分析。以下纲要调查了在这一持续不断的努力中,为这一具有挑战性的车辆开发有效的控制系统所需的关键学科。

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