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Man-Machine Integration Design and Analysis System (MIDAS) v5: Augmentations, Motivations, and Directions for Aeronautics Applications

机译:人机集成设计和分析系统(MIDAS)v5:航空应用的增强,动机和方向

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摘要

As automation and advanced technologies are introduced into transport systems ranging from the Next Generation Air Transportation System termed NextGen, to the advanced surface transportation systems as exemplified by the Intelligent Transportations Systems, to future systems designed for space exploration, there is an increased need to validly predict how the future systems will be vulnerable to error given the demands imposed by the assistive technologies. One formalized approach to study the impact of assistive technologies on the human operator in a safe and non-obtrusive manner is through the use of human performance models (HPMs). HPMs play an integral role when complex human-system designs are proposed, developed, and tested. One HPM tool termed the Man-machine Integration Design and Analysis System (MIDAS) is a NASA Ames Research Center HPM software tool that has been applied to predict human-system performance in various domains since 1986. MIDAS is a dynamic, integrated HPM and simulation environment that facilitates the design, visualization, and computational evaluation of complex man-machine system concepts in simulated operational environments. The paper will discuss a range of aviation specific applications including an approach used to model human error for NASA s Aviation Safety Program, and what-if analyses to evaluate flight deck technologies for NextGen operations. This chapter will culminate by raising two challenges for the field of predictive HPMs for complex human-system designs that evaluate assistive technologies: that of (1) model transparency and (2) model validation.
机译:随着自动化和先进技术被引入运输系统,从被称为NextGen的下一代航空运输系统,到以智能运输系统为代表的先进地面运输系统,再到为空间探索而设计的未来系统,人们越来越需要有效地进行太空探索。根据辅助技术的需求,预测未来的系统将如何容易出错。一种以安全,无干扰的方式研究辅助技术对操作员的影响的正式方法是使用人员绩效模型(HPM)。在提议,开发和测试复杂的人机设计时,HPM扮演着不可或缺的角色。 NASA Ames研究中心HPM软件工具是一种称为人机集成设计和分析系统(MIDAS)的HPM工具,自1986年以来已用于预测各个领域的人机性能。MIDAS是动态的,集成的HPM和模拟在模拟操作环境中促进复杂人机系统概念的设计,可视化和计算评估的环境。本文将讨论一系列特定于航空的应用,包括用于为NASA的航空安全计划的人为失误建模的方法,以及用于评估NextGen操作的驾驶舱技术的假设分析。本章将通过对评估辅助技术的复杂人系统设计的预测HPM领域提出两个挑战:(1)模型透明性和(2)模型验证。

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    Gore, Brian F.;

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  • 年度 2011
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