一种采用全连接网络结构的多层立体显示屏及其显示系统

By using a multi-layer stereoscopic display with a fully connected network structure, the problems of performance degradation in two-dimensional display technology and the shortcomings of stereoscopic display technology are solved, achieving a high-efficiency and low-cost three-dimensional display effect.

CN118397932BActive Publication Date: 2026-07-17NANJING UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANJING UNIV
Filing Date
2024-04-15
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing two-dimensional planar display technology suffers from a decline in other performance aspects when increasing pixel scale, and existing stereoscopic display technology has problems such as large footprint, high processing cost, low viewpoint resolution, and reduced image brightness, making it difficult to achieve high-performance three-dimensional display.

Method used

The multi-layer stereoscopic display screen adopts a fully connected network structure. Through the combination of image rendering unit, auxiliary control unit and output unit, it uses the fully connected layer of multiple display screens to perform three-dimensional reconstruction and rendering. Combined with controllable transformer and memristor for signal feedback and nonlinear processing, it realizes efficient rendering and display of three-dimensional images.

Benefits of technology

It improves the resolution and display efficiency of 3D images, expands the I/O peripheral resources of stereoscopic display devices, reduces iteration costs, and realizes a high-performance 3D display system.

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Abstract

本申请公开了一种采用全连接网络结构的多层立体显示屏及其显示系统,在采集目标图像后将数据作为输入层传入到基于神经网络学习模式的多屏结构与相关光电器件组成的多层隐藏层中获取对象的隐式表达,最后通过嵌入式硬件组成的输出层显示对应场景,该设计利于改善立体显示效果,通过光电器件进行参数控制,不仅速度更快、并行程度更高,同时释放刷新率、色域范围、灰度等级等性能,更易满足对大量数据信息的实时处理要求,且不再需要大功率计算机支持,同时期待突破现行显示技术的二维架构,将显示器的结构从二维扩展到三维,利用低性能显示面板,通过计算显示的隐式表达手段,构建性能高、综合指标优秀的显示系统。
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