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Enhanced/Synthetic Vision and Head-Worn Display Technologies for Terminal Maneuvering Area NextGen Operations

机译:用于终端操纵区域下一代运营的增强/综合视觉和头戴式显示技术

摘要

NASA is researching innovative technologies for the Next Generation Air Transportation System (NextGen) to provide a "Better-Than-Visual" (BTV) capability as adjunct to "Equivalent Visual Operations" (EVO); that is, airport throughputs equivalent to that normally achieved during Visual Flight Rules (VFR) operations rates with equivalent and better safety in all weather and visibility conditions including Instrument Meteorological Conditions (IMC). These new technologies build on proven flight deck systems and leverage synthetic and enhanced vision systems. Two piloted simulation studies were conducted to access the use of a Head-Worn Display (HWD) with head tracking for synthetic and enhanced vision systems concepts. The first experiment evaluated the use a HWD for equivalent visual operations to San Francisco International Airport (airport identifier: KSFO) compared to a visual concept and a head-down display concept. A second experiment evaluated symbology variations under different visibility conditions using a HWD during taxi operations at Chicago O'Hare airport (airport identifier: KORD). Two experiments were conducted, one in a simulated San Francisco airport (KSFO) approach operation and the other, in simulated Chicago O'Hare surface operations, evaluating enhanced/synthetic vision and head-worn display technologies for NextGen operations. While flying a closely-spaced parallel approach to KSFO, pilots rated the HWD, under low-visibility conditions, equivalent to the out-the-window condition, under unlimited visibility, in terms of situational awareness (SA) and mental workload compared to a head-down enhanced vision system. There were no differences between the 3 display concepts in terms of traffic spacing and distance and the pilot decision-making to land or go-around. For the KORD experiment, the visibility condition was not a factor in pilot's rating of clutter effects from symbology. Several concepts for enhanced implementations of an unlimited field-of-regard BTV concept for low-visibility surface operations were determined to be equivalent in pilot ratings of efficacy and usability.
机译:NASA正在研究下一代航空运输系统(NextGen)的创新技术,以提供“优于视觉”(BTV)功能,作为“等效视觉操作”(EVO)的辅助功能;也就是说,在包括仪表气象条件(IMC)在内的所有天气和能见度条件下,机场的吞吐量都等同于目视飞行规则(VFR)正常运行时的吞吐量,并且具有同等且更好的安全性。这些新技术建立在成熟的驾驶舱系统之上,并利用了合成和增强的视觉系统。进行了两项试点模拟研究,以使用头戴式显示器(HWD)进行合成和增强视觉系统概念的头部跟踪。第一个实验评估了将HWD与旧金山国际机场(机场标识符:KSFO)等效的视觉操作与视觉概念和平视显示器概念的比较。第二个实验在芝加哥奥黑尔机场(机场标识符:KORD)的滑行操作期间,使用HWD评估了在不同能见度条件下的符号系统变化。进行了两个实验,一个在模拟的旧金山机场(KSFO)进场操作中进行,另一个在模拟的芝加哥奥黑尔地面操作中进行了实验,评估了NextGen的增强/合成视觉和头戴式显示技术。与KSFO相比,在采用紧密间隔的KSFO平行进近方法时,飞行员在低能见度条件下(相当于窗外条件,无限制可见性)对HWD进行了状态感知(SA)和精神工作量方面的评估。头部向下的增强视觉系统。这三种显示概念在交通间距和距离以及飞行员着陆或复飞的决策方面没有差异。对于KORD实验,可见性条件不是飞行员对符号系统杂波影响评级的一个因素。确定了用于低可见性地面操作的无限制BTV概念的增强实施的几个概念在功效和可用性的飞行员等级上是等效的。

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