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Contrast measures for predicting perceptual effects of daylight in architectural renderings

机译:预测建筑效果图中日光感官效果的对比措施

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摘要

Daylit architecture is perceived as a dynamic luminous composition, yet most existing performance metrics were designed to evaluate natural illumination for its ability to adequately illuminate a two-dimensional task surface and avoid glare-based discomfort. It may be argued that task-driven approaches based on surface illumination and glare ignore the likelihood that contrast can provide positive impacts on our visual perception of space. Advances in these metrics to accommodate climate-based sky conditions and occupant behaviour have improved our ability to evaluate task illumination and glare, yet the same attention has not been paid to evaluating positive perceptual responses to daylight. Existing studies have attempted to link subjective ratings of composition to simple global contrast metrics without reaching consensus. More advanced metrics have been developed in computational graphics and vision fields but have not been applied to studies in qualitative lighting research. This paper introduces the results from an online experiment where subject ratings of daylight composition are compared to quantitative contrast measures across a series of renderings. This paper will identify which measures correlate to subjects’ ratings of visual interest and introduces a modified contrast algorithm, which can be used as a novel prediction model for visual interest in daylit renderings.
机译:采光的建筑被认为是一种动态的发光成分,但是大多数现有的性能指标都是为了评估自然照明是否能够充分照明二维任务面并避免基于眩光的不适而设计的。可以说基于表面照明和眩光的任务驱动方法忽略了对比度可能对我们对空间的视觉感知产生积极影响的可能性。这些指标在适应基于气候的天空条件和乘员行为方面的进步提高了我们评估任务照明和眩光的能力,但是对于评估对日光的积极感知反应却没有给予同样的关注。现有研究试图将构图的主观评分与简单的全球对比指标联系起来,而没有达成共识。在计算图形和视觉领域已经开发了更高级的度量标准,但尚未将其应用于定性照明研究中。本文介绍了一个在线实验的结果,该实验将日光组成的主题评分与一系列渲染中的定量对比度量进行了比较。本文将确定与受试者的视觉兴趣等级相关的量度,并介绍一种改进的对比度算法,该算法可用作日光渲染中视觉兴趣的新型预测模型。

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  • 来源
    《Lighting Research & Technology》 |2017年第7期|882-903|共22页
  • 作者单位

    Interdisciplinary Laboratory of Performance-Integrated Design, Ecole Polytechnique Federale de Lausanne, Lausanne, Switzerland;

    Interdisciplinary Laboratory of Performance-Integrated Design, Ecole Polytechnique Federale de Lausanne, Lausanne, Switzerland;

    Interdisciplinary Laboratory of Performance-Integrated Design, Ecole Polytechnique Federale de Lausanne, Lausanne, Switzerland;

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