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3D Crosstalk reduction of the stereoscopic display by the bit-expandable dynamic capacitance compensation method

机译:通过位可扩展动态电容补偿方法降低立体显示器的3D串扰

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The conventional dynamic capacitance compensation (DCC) method applied to the 3D LCD display has difficulty having the low crosstalk level encouraged for optimal 3D image qualities. The bit-expandable DCC method is proposed in this paper to make the crosstalk compensation more accurate by offering a larger number of DCC lookup table (LUT) value candidates. The bit-expandable DCC method includes DCC LUT with larger bits of data than the input data of the display, and modified bilinear interpolation to reduce the crosstalk over all the gray-level transitions between the previous and current frames. Next, the multitoning method restores the bit numbers lengthened by LUT, minimizing the data loss and the multitoning artifacts. Finally, based both on the crosstalk simulation result and the hardware utilization, it can be concluded that the bit numbers of DCC LUT expanded to 12 bit is optimal, and the experiment showed that the crosstalk corresponding to all the gray-to-gray data transitions decreased to below 1%.
机译:应用于3D LCD显示器的常规动态电容补偿(DCC)方法很难获得较低的串扰水平,以实现最佳3D图像质量。本文提出了一种位扩展DCC方法,通过提供大量的DCC查找表(LUT)值候选来使串扰补偿更加准确。比特可扩展的DCC方法包括具有比显示器的输入数据更大的数据比特的DCC LUT,以及经过修改的双线性插值法,以减少先前帧与当前帧之间所有灰度转换的串扰。接下来,多音频方法恢复了由LUT延长的位数,从而最大程度地减少了数据丢失和多音频伪影。最后,根据串扰仿真结果和硬件利用率,可以得出结论:DCC LUT的位数扩展到12位是最佳的,并且实验表明,与所有灰度到灰色数据转换相对应的串扰降至1%以下。

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