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Inter-reflection Compensation of Immersive Projection Display by Spatio-Temporal Screen Reflectance Modulation

机译:时空屏幕反射率调制对沉浸式投影显示器的反射间补偿

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We propose a novel inter-reflection compensation technique for immersive projection displays wherein we spatially modulate the reflectance pattern on the screen to improve the compensation performance of conventional methods. As the luminance of light reflected on a projection surface is mathematically represented as the multiplication of the illuminance of incident light and the surface reflectance, we can reduce undesirable intensity elevation because of inter-reflections by decreasing surface reflectance. Based on this principle, we improve conventional inter-reflection compensation techniques by applying reflectance pattern modulation. We realize spatial reflectance modulation of a projection screen by painting it with a photochromic compound, which changes its color (i.e., the reflectance of the screen) when ultraviolet (UV) light is applied and by controlling UV irradiation with a UV LED array placed behind the screen. The main contribution of this paper is a computational model to optimize a reflectance pattern for the accurate reproduction of a target appearance by decreasing the intensity elevation caused by inter-reflection while maintaining the maximum intensity of the target appearance. Through simulation and physical experiments, we demonstrate the feasibility of the proposed model and confirm its advantage over conventional methods.
机译:我们提出了一种用于沉浸式投影显示器的新颖的反射间补偿技术,其中我们在屏幕上空间地调制反射率图案,以提高传统方法的补偿性能。由于在投影表面上反射的光的亮度在数学上表示为入射光的照度与表面反射率的乘积,我们可以通过降低表面反射率来减少由于相互反射而产生的不希望的强度升高。基于此原理,我们通过应用反射率图案调制来改进常规的反射间补偿技术。我们通过用光致变色化合物粉刷来实现投影屏幕的空间反射率调制,该光致变色化合物在施加紫外线(UV)时会改变其颜色(即屏幕的反射率),并通过放置在后面的UV LED阵列控制UV辐射屏幕。本文的主要贡献是一个计算模型,该模型可以在保持目标外观最大强度的同时,通过减少因相互反射而引起的强度升高来优化反射图样,从而精确再现目标外观。通过仿真和物理实验,我们证明了该模型的可行性,并证实了其相对于传统方法的优势。

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