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Design and testing of an unlimited field-of-regard synthetic vision head-worn display for commercial aircraft surface operations

机译:用于商用飞机表面操作的无限制 - 以无限的型合成视觉头部磨损显示器的设计和测试

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Experiments and flight tests have shown that a Head-Up Display (HUD) and a head-down, electronic moving map (EMM) can be enhanced with Synthetic Vision for airport surface operations. While great success in ground operations was demonstrated with a HUD, the research noted that two major HUD limitations during ground operations were their monochrome form and limited, fixed field of regard. A potential solution to these limitations found with HUDs may be emerging Head Worn Displays (HWDs). HWDs are small, lightweight full color display devices that may be worn without significant encumbrance to the user. By coupling the HWD with a head tracker, unlimited field-of-regard may be realized for commercial aviation applications. In the proposed paper, the results of two ground simulation experiments conducted at NASA Langley are summarized. The experiments evaluated the efficacy of head-worn display applications of Synthetic Vision and Enhanced Vision technology to enhance transport aircraft surface operations. The two studies tested a combined six display concepts: (1) paper charts with existing cockpit displays, (2) baseline consisting of existing cockpit displays including a Class III electronic flight bag display of the airport surface; (3) an advanced baseline that also included displayed traffic and routing information, (4) a modified version of a HUD and EMM display demonstrated in previous research; (5) an unlimited field-of-regard, full color, head-tracked HWD with a conformal 3-D synthetic vision surface view; and (6) a fully integrated HWD concept. The fully integrated HWD concept is a head-tracked, color, unlimited field-of-regard concept that provides a 3-D conformal synthetic view of the airport surface integrated with advanced taxi route clearance, taxi precision guidance, and data-link capability. The results of the experiments showed that the fully integrated HWD provided greater path performance compared to using paper charts alone. Further, when comparing the HWD with the HUD concept, there were no differences in path performance. In addition, the HWD and HUD concepts were rated via paired-comparisons the same in terms of situational awareness and workload. However, there were over twice as many taxi incursion events with the HUD than the HWD.
机译:实验和飞行试验表明,可以通过用于机场表面操作的合成视觉来增强朝上显示器(HUD)和头部,电子移动地图(EMM)。虽然在地面运营中取得了巨大的成功,但研究了,研究指出,地面运营期间的两个主要的HUD限制是他们的单色形式和有限,固定的固定领域。使用HUDS发现这些限制的潜在解决方案可能是出现的头部磨损显示器(HWDS)。 HWDS很小,轻质全彩色显示设备,可能会佩戴,而不会对用户抱怨。通过将HWD与头部跟踪器耦合,可以实现无限的关于商业航空应用的关键字。在拟议论文中,总结了在美国宇航局兰利进行的两个地面模拟实验的结果。实验评估了合成视觉和增强视觉技术的头部磨损显示器应用的功效,以增强运输飞机表面操作。这两项研究测试了一个组合的六个显示概念:(1)具有现有驾驶舱显示器的纸张图表,(2)基线由现有的驾驶舱显示器组成,包括机场表面的III类电子飞行袋显示器; (3)还包括显示流量和路由信息的高级基线,(4)先前研究中演示的HUD和EMM显示的修改版本; (5)无限制的歧视栏目,具有共形3-D合成视觉表面视图的全彩色,头部跟踪的HWD; (6)一个完全集成的HWD概念。完全集成的HWD概念是一个头路跟踪的颜色,无限的概念,提供了一个3-D共形综合性的机场表面,集成了先进的出租车路线清除,出租车精密指导和数据链接能力。实验结果表明,与单独使用纸张图表相比,完全集成的HWD提供了更大的路径性能。此外,当将HWD与HUD概念进行比较时,路径性能没有差异。此外,HWD和HUD概念通过相同的对比较和工作量的配对比较来评级。但是,超过了两倍多的出租车侵占事件,而不是HUD。

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