首页> 外文会议>Conference on image processing: Algorithms and systems VII; 20090119-20, 22; San Jose, CA(US) >Nonlinear mapping of the luminance in dual-layer high dynamic range displays
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Nonlinear mapping of the luminance in dual-layer high dynamic range displays

机译:双层高动态范围显示器中亮度的非线性映射

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It has long been known that the human visual system (HVS) has a nonlinear response to luminance. This nonlinearity can be quantified using the concept of just noticeable difference (JND), which represents the minimum amplitude of a specified test pattern an average observer can discern from a uniform background. The JND depends on the background luminance following a threshold versus intensity (TVI) function. It is possible to define a curve which maps physical luminances into a perceptually linearized domain. This mapping can be used to optimize a digital encoding, by minimizing the visibility of quantization noise. It is also commonly used in medical applications to display images adapting to the characteristics of the display device. High dynamic range (HDR) displays, which are beginning to appear on the market, can display luminance levels outside the range in which most standard mapping curves are defined. In particular, dual-layer LCD displays are able to extend the gamut of luminance offered by conventional liquid crystals towards the black region; in such areas suitable and HVS-compliant luminance transformations need to be determined. In this paper we propose a method, which is primarily targeted to the extension of the DICOM curve used in medical imaging, but also has a more general application. The method can be modified in order to compensate for the ambient light, which can be significantly greater than the black level of an HDR display and consequently reduce the visibility of the details in dark areas.
机译:众所周知,人类视觉系统(HVS)对亮度具有非线性响应。可以使用“仅注意差异”(JND)的概念来量化这种非线性,该差异表示平均观察者可以从一致的背景中识别出的指定测试图案的最小幅度。 JND取决于阈值与强度(TVI)函数之间的背景亮度。可以定义一条曲线,将物理亮度映射到可感知的线性化域中。通过最小化量化噪声的可见性,此映射可用于优化数字编码。它也通常用于医疗应用中以显示适合显示设备特性的图像。高动态范围(HDR)显示器已经开始出现在市场上,它可以显示超出大多数标准映射曲线定义范围的亮度水平。尤其是,双层LCD显示器能够将传统液晶提供的亮度范围扩展到黑色区域。在这样的区域中,需要确定合适且符合HVS的亮度转换。在本文中,我们提出了一种方法,该方法主要针对医学成像中使用的DICOM曲线的扩展,但也有更广泛的应用。可以修改该方法以补偿环境光,该环境光可以显着大于HDR显示器的黑电平,从而降低暗区中细节的可见性。

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