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在广泛的环境光条件下为驾驶舱显示器提供最佳显示亮度。

Optimum display luminance under a wide range of ambient light for cockpit displays.

出版信息

Opt Express. 2022 Oct 10;30(21):38439-38457. doi: 10.1364/OE.466039.

Abstract

The self-luminous cockpit displays need to be adaptive to a wide range of ambient light levels, which changes from very low illuminance to very high levels. Yet, current studies on evaluation and luminance setting of displays in bright surroundings are still limited. In this study, a three-dimensional visual ergonomic experiment was carried out to investigate how bright a cockpit display should be to meet aircrew operational requirements under different illuminance. A lab study with a within-subjects (N = 12) design was conducted in a simulated cockpit. According to the Weber-Fechner's Law, human observers evaluated five display luminance conditions (10, 10, 10, 10, 10 cd/m) under five ambient illuminance conditions (10°, 10, 10, 10, 10 lx). Visual performance, visual fatigue and visual comfort were used as evaluation bases, which were measured by d2 task, subjective fatigue questionnaire and visual perception semantic scales. Nonlinear function fitting was used to calculate the optimal luminance under a certain illuminance. Finally, curvilinear regression was used to analyze the illuminance and its corresponding optimal luminance. Based on Silverstein luminance power function, a luminance adjustment model with the form of power function was obtained. The proposed three-dimensional model fits the experimental data well and is consistent with the existing studies. It can be regarded as a supplement and optimization of the previous model under high ambient illuminance. This study can contribute not only to the pleasing luminance setting of panel displays in aircraft cockpits but also to other self-luminous devices, such as tablet devices, outdoor monitoring equipment and advertising screens.

摘要

自发光驾驶舱显示器需要能够适应广泛的环境光照水平,从非常低的照度到非常高的水平。然而,目前关于明亮环境下显示器评估和亮度设置的研究仍然有限。在这项研究中,进行了一项三维视觉工效学实验,以研究在不同照度下,飞机驾驶舱显示器应该有多亮才能满足机组人员的操作要求。这是一项在模拟驾驶舱中进行的、采用被试内设计(N=12)的实验室研究。根据韦伯-费希纳定律,在五种环境照度(10°、10、10、10、10 lx)下,观察者评估了五种显示器亮度条件(10、10、10、10、10 cd/m²)。视觉性能、视觉疲劳和视觉舒适度被用作评估依据,通过 d2 任务、主观疲劳问卷和视觉感知语义量表进行测量。使用非线性函数拟合来计算特定照度下的最佳亮度。最后,使用曲线回归来分析照度及其对应的最佳亮度。基于 Silverstein 亮度幂函数,得到了一种亮度调整模型,其形式为幂函数。所提出的三维模型很好地拟合了实验数据,与现有研究一致。它可以被视为高环境照度下先前模型的补充和优化。本研究不仅有助于飞机驾驶舱中面板显示器的悦目亮度设置,还有助于其他自发光设备,如平板电脑、户外监控设备和广告屏幕。

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