矢量运输概念验证和飞行推力演示的灾难性故障预防——矢量飞行控制rpv:方法论和仪器

B. Gal-or
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引用次数: 5

摘要

作者建议将军用推力矢量飞行控制(TVFC)技术转化为民用运输应用,将作战敏捷能力转化为新的、前所未有的飞行安全标准。本文主要处理后者,将高期望矢量运输的空中安全潜力与气动飞行控制[AFC]规定的有限的传统空中安全标准进行了比较。为在紧急情况下可部署的TVFC手段与AFC手段集成,定义了最大化灾难性故障预防[CFP]潜力的基本标准。介绍了矢量传输概念验证和tvfc诱导的CFP实现的方法和仪器。CFP通过飞行动态缩放,矢量727运输和滚转偏航-俯仰- tvfc F-22战斗机原型进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vectored transport proof-of-concept and catastrophic failure prevention demonstrated by flying thrust-vectoring flight-controlled RPVs: methodology and instrumentation
The author's proposal to convert military thrust-vectoring-flight-control [TVFC] technologies into civil transport applications, translates combat-agility capabilities into new and unprecedented flight-safety standards. Dealing mainly with the latter, this paper compares high expected vectored-transport air-safety potentials with the limited conventional air-safety standards dictated by aerodynamic flight control [AFC]. Fundamental criteria for maximizing catastrophic failure prevention [CFP] potentials are defined for deployable TVFC means integrated with AFC means during emergency. Methodology and instrumentation used for vectored transport proof-of-concept and TVFC-induced CFP implementation are presented. CFP was demonstrated by flying dynamically-scaled, vectored 727 transport and roll-yaw-pitch-TVFC F-22 fighter prototypes.
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