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Initial Development of a Metric to Describe the Level of Safety Associated with Piloting an Aircraft with Synthetic Vision Systems (SVS) Displays

机译:初步开发一种描述具有合成视觉系统(SVS)显示器的飞机驾驶相关安全性的度量标准

摘要

Synthetic Vision Systems (SVS) displays provide pilots with a continuous view of terrain combined with integrated guidance symbology in an effort to increase situation awareness (SA) and decrease workload during operations in Instrument Meteorological Conditions (IMC). It is hypothesized that SVS displays can replicate the safety and operational flexibility of flight in Visual Meteorological Conditions (VMC), regardless of actual out-the-window (OTW) visibility or time of day. Significant progress has been made towards evolving SVS displays as well as demonstrating their ability to increase SA compared to conventional avionics in a variety of conditions. While a substantial amount of data has been accumulated demonstrating the capabilities of SVS displays, the ability of SVS to replicate the safety and operational flexibility of VMC flight performance in all visibility conditions is unknown to any specific degree. In order to more fully quantify the relationship of flight operations in IMC with SVS displays to conventional operations conducted in VMC, a fundamental comparison to current day general aviation (GA) flight instruments was warranted. Such a comparison could begin to establish the extent to which SVS display concepts are capable of maintaining an "equivalent level of safety" with the round dials they could one day replace, for both current and future operations. A combination of subjective and objective data measures were used to quantify the relationship between selected components of safety that are associated with flying an approach. Four information display methods ranging from a "round dials" baseline through a fully integrated SVS package that includes terrain, pathway based guidance, and a strategic navigation display, were investigated in this high fidelity simulation experiment. In addition, a broad spectrum of pilots, representative of the GA population, were employed for testing in an attempt to enable greater application of the results and determine if "equivalent levels of safety" are achievable through the incorporation of SVS technology regardless of a pilot's flight experience.
机译:综合视觉系统(SVS)显示屏结合综合的引导符号系统,为飞行员提供了连续的地形视图,从而在仪器气象条件(IMC)的操作过程中提高了态势感知(SA)并减少了工作量。假设SVS显示器可以复制可视气象条件(VMC)中飞行的安全性和操作灵活性,而与实际的窗外(OTW)可见度或一天中的时间无关。在各种条件下,与传统航空电子设备相比,在发展SVS显示器以及显示其提高SA的能力方面已取得了重大进展。尽管已积累了大量数据,证明了SVS显示器的功能,但在任何特定程度上,SVS能够在所有可见度条件下复制VMC飞行性能的安全性和操作灵活性的能力都是未知的。为了更充分地量化带有SVS显示器的IMC中的飞行操作与VMC中进行的常规操作之间的关系,必须与当今的通用航空(GA)飞行仪器进行基本比较。这样的比较可以开始确定SVS显示概念在今天和将来的操作中能够在一天之内替换掉的圆形刻度盘上保持“等效安全水平”的程度。主观和客观数据措施的组合被用来量化与飞行进近相关的选定安全组件之间的关系。在此高保真度模拟实验中,研究了四种信息显示方法,从“圆形表盘”基线到完全集成的SVS程序包,包括地形,基于路径的导航和战略性导航显示。此外,广泛采用了代表GA人群的飞行员来进行测试,以试图更好地应用结果,并确定通过纳入SVS技术是否可以实现“等效安全水平”,而与飞行员的身份无关。飞行经验。

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