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A Novel Pseudo-Random Scan Method for Silicon-Based Microdisplay

机译:基于硅的微显示器的新型伪随机扫描方法

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The continuous warming of the virtual reality (VR) display pushes the microdisplay to the high resolution and high refresh rate. However, the limited bandwidth of the microdisplay is difficult to carry the massive image data in the virtual world. In order to reduce the time redundancy, improve the transmission efficiency and solve the problem of low linearity in the imaging process, this paper introduces a novel pseudo-random scan method which is established on the traditional fractal scan model. And a silicon-based OLED microdisplay verification platform with a resolution of 1.6K*3*1.6K is built. The pseudorandom scan method achieves 100% transmission efficiency and 94.1% linearity, which is suitable for ultra-high definition and high-resolution microdisplays.
机译:虚拟现实(VR)显示器的持续升温将微型显示器推向了高分辨率和高刷新率。然而,微型显示器的有限带宽难以在虚拟世界中携带海量图像数据。为了减少时间冗余,提高传输效率,解决成像过程中线性度低的问题,在传统的分形扫描模型的基础上,提出了一种新的伪随机扫描方法。并构建了分辨率为1.6K * 3 * 1.6K的硅基OLED微显示器验证平台。伪随机扫描方法可实现100%的传输效率和94.1%的线性度,适用于超高清和高分辨率的微型显示器。

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