Colorado State University, Ft Collins, USA.
Hum Factors. 2023 Jun;65(4):651-662. doi: 10.1177/00187208211022468. Epub 2021 Jun 2.
Evaluate and model the advantage of a situation awareness (SA) supported by an augmented reality (AR) display for the ground-based joint terminal attack Controller (JTAC), in judging and describing the spatial relations between objects in a hostile zone.
The accurate world-referenced description of relative locations of surface objects, when viewed from an oblique slant angle (aircraft, observation post) is hindered by (1) the compression of the visual scene, amplified at a lower slang angle, (2) the need for mental rotation, when viewed from a non-northerly orientation.
Participants viewed a virtual reality (VR)-simulated four-object scene from either of two slant angles, at each of four compass orientations, either unaided, or aided by an AR head-mounted display (AR-HMD), depicting the scene from a top-down (avoiding compression) and north-up (avoiding mental rotation) perspective. They described the geographical layout of four objects within the display.
Compared with the control condition, that condition supported by the north-up SA display shortened the description time, particularly on non-northerly orientations (9 s, 30% benefit), and improved the accuracy of description, particularly for the more compressed scene (lower slant angle), as fit by a simple computational model.
The SA display provides large, significant benefits to this critical phase of ground-air communications in managing an attack-as predicted by the task analysis of the JTAC.
Results impact the design of the AR-HMD to support combat ground-air communications and illustrate the magnitude by which basic cognitive principles "scale up" to realistically simulated real-world tasks such as search and rescue.
评估和建模增强现实(AR)显示支持的态势感知(SA)在判断和描述敌对区域中物体之间的空间关系方面对地面联合终端攻击控制器(JTAC)的优势。
从倾斜角度(飞机、观察哨)观察时,地面物体相对位置的准确世界参考描述受到以下因素的阻碍:(1)视觉场景的压缩,在较低的倾斜角度下放大;(2)从非正北方向观察时需要进行心理旋转。
参与者从两个倾斜角度中的任意一个,以四个罗盘方位中的每一个,观看虚拟现实(VR)模拟的四物体场景,观察时可以不借助任何设备,也可以借助描绘从上至下(避免压缩)和北向上(避免心理旋转)视角场景的 AR 头戴式显示器(AR-HMD)。他们描述了显示中四个物体的地理位置。
与对照组相比,支持 SA 显示的条件缩短了描述时间,特别是在非正北方向上(9 秒,30%的优势),并且提高了描述的准确性,特别是对于更压缩的场景(更低的倾斜角度),这与一个简单的计算模型相吻合。
SA 显示为地面与空中的通信这一关键阶段提供了重要的、显著的优势,正如 JTAC 的任务分析所预测的那样。
结果影响支持战斗地面与空中通信的 AR-HMD 的设计,并说明了基本认知原则“扩展”到真实模拟的现实世界任务(如搜索和救援)的幅度。