A Novel Adaptive Local Dimming Backlight Control Chip Design Based on Gaussian Distribution for Liquid Crystal Displays

Q Engineering
Shih-Lun Chen;Hsin-Ju Tsai
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引用次数: 15

Abstract

In this paper, a novel hardware-oriented adaptive local dimming backlight control algorithm is proposed for very large-scale integration implementation. The proposed algorithm includes a novel dimming algorithm to save energy of the liquid crystal display (LCD) backlight module and a novel contrast enhancement algorithm to compensate the dimming of brightness in displaying images. In order to improve the power-saving rates and image quality, a block-based model and a Gaussian distribution model were added. After obtaining a clipped point by the Gaussian distribution model, a pixel compensator was used to compensate the brightness value of each pixel to satisfy the human vision. In the meantime, a power width modulation module produced power control signal for the LCD backlight module. To meet the performance standards for displaying video in real time, the proposed algorithm was implemented by an eight-stage pipelined architecture. In addition, a new color-space YEF transform composed of integer adders and shifters was used to realize the grayscale converter to replace floating point multipliers. Moreover, the high-complexity operations, such as square root, multiplication, and division, required for the Gaussian distribution model were simplified by using a lookup table technique, which could reduce the hardware cost of the proposed design efficiently. This design was fabricated by a TSMC 0.18-μm CMOS process, and the chip area is 630 105 μm 2 . Compared with previous local dimming backlight control algorithms, this work improved the average peak signal to noise ratio by 6.89 dB and saved 7.61% more backlight power consumption than previous studies.
一种新的基于高斯分布的液晶显示器自适应局部调光背光控制芯片设计
本文提出了一种面向硬件的自适应局部调光背光控制算法,用于大规模集成实现。所提出的算法包括一种用于节省液晶显示器(LCD)背光模块能量的新型调光算法和一种用于补偿显示图像中亮度调光的新型对比度增强算法。为了提高节能率和图像质量,增加了基于块的模型和高斯分布模型。在通过高斯分布模型获得裁剪点后,使用像素补偿器来补偿每个像素的亮度值,以满足人类视觉。同时,功率宽度调制模块为液晶背光模块产生功率控制信号。为了满足实时视频显示的性能标准,该算法采用八级流水线结构实现。此外,还使用了一种由整数加法器和移位器组成的新的颜色空间YEF变换来实现灰度转换器,以取代浮点乘法器。此外,通过使用查找表技术简化了高斯分布模型所需的高复杂度运算,如平方根、乘法和除法,这可以有效地降低所提出设计的硬件成本。该设计采用台积电0.18μm CMOS工艺制造,芯片面积为630~105μm2。与以往的局部调光背光控制算法相比,该工作将平均峰值信噪比提高了6.89dB,比以往的研究多节省了7.61%的背光功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Display Technology
Journal of Display Technology 工程技术-工程:电子与电气
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
2.8 months
期刊介绍: This publication covers the theory, material, design, fabrication, manufacturing and application of information displays and aspects of display technology that emphasize the progress in device engineering, design and simulation, materials, electronics, physics, and reliability aspects of displays and the application of displays. The Journal is sponsored by EDS, seven other IEEE societies (BT, CES, CPMT, IA, IM, PHO and SSC) and the Optical Society of America (OSA).
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