首页> 外文会议>World Aviation Congress and Exposition >The efficacy of using synthetic vision terrain-textured images to improve pilot situation awareness
【24h】

The efficacy of using synthetic vision terrain-textured images to improve pilot situation awareness

机译:使用综合性地形纹理图像的功效提高试点情况意识

获取原文
获取外文期刊封面目录资料

摘要

The General Aviation Element of the Aviation Safety Program's Synthetic Vision Systems (SVS) Project is developing technology to eliminate low-visibility-induced General Aviation (GA) accidents. SVS displays present computer-generated, 3-dimensional imagery of the surrounding terrain on the Primary Flight Display (PFD) to greatly enhance pilot's situation awareness (SA), reducing or eliminating Controlled Flight into Terrain, as well as Low-Visibility Loss of Control accidents. SVS-conducted research is facilitating development of display concepts that provide the pilot with an unobstructed view of the outside terrain, regardless of weather conditions and time of day. A critical component of SVS displays is the appropriate presentation of terrain to the pilot. An experimental study is being conducted at NASA Langley Research Center (LaRC) to explore and quantify the relationship between the realism of the terrain presentation and resulting enhancements of pilot SA and performance. Composed of complementary simulation and flight test efforts, Terrain Portrayal for Head-Down Displays (TP-HDD) experiments will help researchers evaluate critical terrain portrayal concepts. The experimental effort is to provide data to enable design trades that optimize SVS applications, as well as develop requirements and recommendations to facilitate the certification process. In this part of the experiment a fixed based flight simulator was equipped with various types of Head Down flight displays, ranging from conventional round dials (typical of most GA aircraft) to glass cockpit style PFD's. The variations of the PFD included an assortment of texturing and Digital Elevation Model (DEM) resolution combinations. A test matrix of 10 terrain display configurations (in addition to the baseline displays) were evaluated by 27 pilots of various backgrounds and experience levels. Qualitative (questionnaires) and quantitative (pilot performance and physiological) data were collected during the experimental runs. This paper focuses on the experimental setup and final physiological results of the TP-HDD simulation experiment. The physiological measures of skin temperature, heart rate, and muscle response, show a decreased engagement (while using the synthetic vision displays as compared to the baseline conventional display) of the sympathetic and somatic nervous system responses which, in turn, indicates a reduced level of mental workload. This decreased level of workload is expected to enable improvement in the pilot's situation and terrain awareness.
机译:航空安全计划的合成视觉系统(SVS)项目的一般航空元件正在开发技术,以消除低可见性诱导的一般航空(GA)事故。 SVS显示当前计算机生成的计算机生成的三维图像,在初级飞行显示器(PFD)上,以大大提高飞行员的情况意识(SA),减少或消除控制飞行到地形,以及低可视性控制事故。 SVS进行的研究促进了显示概念的开发,这些概念提供了一个带有外部地形的无障碍视图,无论天气条件和一天的时间如何。 SVS显示的关键组件是适当地将地形呈现给飞行员。在NASA Langley研究中心(LARC)进行了一个实验研究,探索并量化了地形介绍的现实主义关系,从而提高了飞行员SA和性能。由互补模拟和飞行测试努力组成,地形对下落显示器(TP-HDD)实验的描绘将帮助研究人员评估关键地形描绘概念。实验努力是提供数据,以实现优化SVS应用的设计交易,以及开发要求和建议,以促进认证过程。在该部分的实验中,固定的飞行模拟器配备了各种类型的头部飞行,从传统的圆形拨号(典型的大多数GA飞机)到玻璃驾驶舱风格PFD。 PFD的变体包括各种纹理和数字高度模型(DEM)分辨率组合。通过27个各种背景和体验水平的27个导航,评估10个地形显示配置的测试矩阵(除基线显示器之外)。在实验运行期间收集定性(问卷)和定量(试验性能和生理)数据。本文重点介绍了TP-HDD仿真实验的实验设置和最终生理结果。皮肤温度,心率和肌肉反应的生理措施,表现出降低的接合(与基线常规显示器相比,使用合成视觉显示器的同时)的交感神经和体细胞神经系统反应,这反过来表示降低的水平心理工作量。预计这一减少的工作量将能够改善飞行员的情况和地形意识。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号