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A Method for Quantitative Technology Analysis of Active Rotor Technologies

机译:一种活性转子技术的定量技术分析方法

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Future advances in rotorcraft capabilities depend heavily on their ability to adapt to the changes in their wide-ranging aerodynamic environments. One set of promising technologies proposed to address these issues are Active Rotor Technologies (ARTs). These technologies have the ability to reduce vibration and noise and, to some extent, improve performance. While some ARTs are moving into full scale demonstrations, an adoption of the technologies onto a fleet has not yet occurred. This is likely caused by a lack of understanding of both the positive and negative impacts these technologies would bring to the operations of the vehicle. This paper outlines a method by which ARTs are analyzed in a physics and process-based manner to understand their total cost to Full Spectrum Operations (FSO) and to support future decision making for these advanced technologies. This is accomplished through a framework called Quantitative Technology Analysis (QTA). It is shown that by considering each level of the problem decomposition and applying modeling and simulation, the FSO impact of ARTs can be characterized and used for decision making with QTA.
机译:旋翼飞行能力的未来进展越来越依赖于他们适应其广泛的空气动力学环境中变化的能力。建议解决这些问题的一套有希望的技术是有源转子技术(艺术品)。这些技术有能力降低振动和噪音,在一定程度上提高性能。虽然某些艺术正在进入全面的示范,但尚未发生在舰队上的技术。这可能是由于对这些技术带来了对车辆运营的积极和负面影响缺乏了解造成的。本文概述了一种方法,通过该方法以物理和过程为基础的方式分析,以了解他们的总成本(FSO),并支持这些先进技术的未来决策。这是通过称为定量技术分析(QTA)的框架来实现的。结果表明,通过考虑问题分解和应用建模和仿真的每个级别,可以表征艺术的FSO影响并用于用QTA决策。

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