Zou Guowei, Wang Zeyu, Liu Yutong, Li Juanli, Liu Xingyun, Liu Jiahui, Yang Bo-Ru, Qin Zong
Opt Express. 2022 Jun 6;30(12):21044-21064. doi: 10.1364/OE.459752.
The mini-LED as the backlight of field sequential color LCD (FSC-LCD) enables high contrast, thin volume, and theoretically tripled light efficiency and resolution. However, color breakup (CBU) induced by a relative speed between an observer and the display severely limits the application of FSC-LCDs. Several driving algorithms have been proposed for CBU suppression, but their performance depends on image content. Moreover, their performance plateaus with increasing image segment number, preventing taking advantage of the massive segments introduced by mini-LEDs. Therefore, this study proposes an image content-adaptive driving algorithm for mini-LED FSC-LCDs. Deep learning-based image classification accurately determines the best FSC algorithm with the lowest CBU. In addition, the algorithm is heterogeneous that the image classification is independently performed in each segment, guaranteeing minimized CBU in all segments. We perform objective and subjective validation. Compared with the currently best algorithm, the proposed algorithm improves the performance in suppressing CBU by more than 20% using two evaluation metrics, supported by experiment-based subjective evaluation. Mini-LED FSC-LCDs driven by the proposed algorithm with outstanding CBU suppression can be ideal for display systems requiring high brightness and high resolution, such as head-up displays, virtual reality, and augmented reality displays.
作为场序彩色液晶显示器(FSC-LCD)背光源的微型发光二极管(mini-LED)可实现高对比度、薄型化,并且理论上能使光效率和分辨率提高两倍。然而,观察者与显示器之间的相对速度所引起的颜色分离(CBU)严重限制了FSC-LCD的应用。已经提出了几种用于抑制CBU的驱动算法,但其性能取决于图像内容。此外,随着图像段数的增加,它们的性能趋于平稳,这使得无法利用mini-LED引入的大量段数。因此,本研究提出了一种适用于mini-LED FSC-LCD的图像内容自适应驱动算法。基于深度学习的图像分类能够准确确定具有最低CBU的最佳FSC算法。此外,该算法具有异构性,即图像分类在每个段中独立进行,从而保证所有段中的CBU最小化。我们进行了客观和主观验证。与当前最佳算法相比,所提出的算法在使用两种评估指标抑制CBU方面的性能提高了20%以上,这得到了基于实验的主观评估的支持。由所提出的算法驱动的、具有出色CBU抑制能力的mini-LED FSC-LCD对于需要高亮度和高分辨率的显示系统(如抬头显示器、虚拟现实和增强现实显示器)可能是理想之选。