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Flight Test Comparison Between Enhanced Vision (FLIR) and Synthetic Vision Systems

机译:增强视觉(FLIR)与合成视觉系统之间的飞行测试比较

摘要

Limited visibility and reduced situational awareness have been cited as predominant causal factors for both Controlled Flight Into Terrain (CFIT) and runway incursion accidents. NASA s Synthetic Vision Systems (SVS) project is developing practical application technologies with the goal of eliminating low visibility conditions as a causal factor to civil aircraft accidents while replicating the operational benefits of clear day flight operations, regardless of the actual outside visibility condition. A major thrust of the SVS project involves the development/demonstration of affordable, certifiable display configurations that provide intuitive out-the-window terrain and obstacle information with advanced pathway guidance. A flight test evaluation was conducted in the summer of 2004 by NASA Langley Research Center under NASA s Aviation Safety and Security, Synthetic Vision System - Commercial and Business program. A Gulfstream G-V aircraft, modified and operated under NASA contract by the Gulfstream Aerospace Corporation, was flown over a 3-week period at the Reno/Tahoe International Airport and an additional 3-week period at the NASA Wallops Flight Facility to evaluate integrated Synthetic Vision System concepts. Flight testing was conducted to evaluate the performance, usability, and acceptance of an integrated synthetic vision concept which included advanced Synthetic Vision display concepts for a transport aircraft flight deck, a Runway Incursion Prevention System, an Enhanced Vision Systems (EVS), and real-time Database Integrity Monitoring Equipment. This paper focuses on comparing qualitative and subjective results between EVS and SVS display concepts.
机译:有限的能见度和降低的态势感知被认为是受控飞行到地形(CFIT)和跑道侵入事故的主要原因。 NASA的合成视觉系统(SVS)项目正在开发实用的应用技术,其目标是消除低能见度条件,将其作为民航事故的诱因,同时复制晴天飞行操作的运营优势,而与实际外部能见度条件无关。 SVS项目的主要重点是开发/演示价格合理,可认证的显示配置,这些显示配置可提供直观的窗口外地形和障碍信息以及高级路径指导。 2004年夏天,美国航空航天局兰利研究中心根据美国航空航天局的航空安全和保安,合成视觉系统-商业和商业计划对飞行测试进行了评估。一架湾流GV飞机,由湾流宇航公司根据NASA合同改装和运行,在里诺/塔霍国际机场飞行了3周,在NASA Wallops飞行设施又飞行了3周,以评估综合的合成视觉系统概念。进行了飞行测试,以评估综合合成视觉概念的性能,可用性和接受度,其中包括用于运输机驾驶舱,跑道防入侵系统,增强视觉系统(EVS)和实际-时间数据库完整性监控设备。本文着重比较EVS和SVS显示概念之间的定性和主观结果。

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