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Integrated control and display research for transition and vertical flight on the NASA V/STOL Research Aircraft (VSRA)

机译:在NASA V / STOL研究飞机(VSRA)上进行过渡和垂直飞行的集成控制和显示研究

摘要

Results of a substantial body of ground-based simulation experiments indicate that a high degree of precision of operation for recovery aboard small ships in heavy seas and low visibility with acceptable levels of effort by the pilot can be achieved by integrating the aircraft flight and propulsion controls. The availability of digital fly-by-wire controls makes it feasible to implement an integrated control design to achieve and demonstrate in flight the operational benefits promised by the simulation experience. It remains to validate these systems concepts in flight to establish their value for advanced short takeoff vertical landing (STOVL) aircraft designs. This paper summarizes analytical studies and simulation experiments which provide a basis for the flight research program that will develop and validate critical technologies for advanced STOVL aircraft through the development and evaluation of advanced, integrated control and display concepts, and lays out the plan for the flight program that will be conducted on NASA's V/STOL Research Aircraft (VSRA).
机译:大量的基于地面的模拟实验的结果表明,通过整合飞机的飞行和推进控制,可以实现在重浪中的小型船上进行恢复的高度操作精度以及飞行员可接受的低可见度和飞行员的努力水平。 。数字电传操纵控制系统的可用性使实施集成控制设计成为可能,以实现并在飞行中演示模拟经验所承诺的运行优势。仍有待验证这些系统概念在飞行中,以确立其在先进的短距起飞垂直降落(STOVL)飞机设计中的价值。本文总结了分析研究和模拟实验,这些研究为飞行研究计划提供了基础,该计划将通过开发和评估先进的集成控制和显示概念来开发和验证先进STOVL飞机的关键技术,并制定了飞行计划该计划将在NASA的V / STOL研究飞机(VSRA)上进行。

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