一种将NCL应用转换成立体三维的方法

R. Azevedo, Guilherme Lima, L. Soares
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引用次数: 0

摘要

本文介绍并讨论了NCLSC (NCL Stereo Converter)的内部操作,NCLSC是一个将带有深度信息注释的二维交互式多媒体应用程序转换为立体多媒体应用程序的工具。立体多媒体应用程序是那些同时编码左眼和右眼视图的应用程序,这是立体3D显示所需要的。NCLSC将NCL(嵌套上下文语言)文档作为输入,并以并排或自上而下格式输出NCL立体应用程序(这两种格式都是3DTV的常见输入格式)。NCL是大多数拉丁美洲国家采用的用于地面数字电视中间件系统的声明性语言,也是ITU-T H.761关于IPTV业务的建议。然而,所提出的方法并不局限于NCL,也可以用于其他语言。深度注释允许在分层(2.5D或2D+深度)用户界面中定位每个2D图形组件。NCLSC使用它来计算生成的立体应用程序的左右视图中图形元素之间的屏幕视差(偏移量)。当生成的应用程序在立体3D显示器上呈现时,这种屏幕视差会引起视网膜视差,从而产生浮动平面2d图形元素的错觉。NCLSC不需要任何额外的本地中间件支持来运行在当前可用的3d电视上。此外,NCLSC可以在运行时调整输出应用程序以适应不同的显示尺寸、观看者距离和观看者偏好,这通常需要在艺术效果和用户体验之间取得适当的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Approach to Convert NCL Applications into Stereoscopic 3D
This paper presents and discusses the internal operation of NCLSC (NCL Stereo Converter): a tool to convert a 2D interactive multimedia application annotated with depth information to a stereoscopic-multimedia application. Stereoscopic-multimedia applications are those that codify both the left-eye and right-eye views, as required by stereoscopic 3D displays. NCLSC takes as input an NCL (Nested Context Language) document and outputs an NCL stereoscopic application codified in side-by-side or top-bottom format (both common input formats for 3DTV sets). NCL is the declarative language adopted in most Latin America countries for terrestrial digital TV middleware systems and the ITU-T H.761 Recommendation for IPTV services. However, the proposed approach is not restricted to NCL and can be used by other languages. The depth annotation allows for positioning each 2D graphical component in a layered (2.5D or 2D+depth) user interface. It is used by NCLSC to compute the screen parallax (offset) between the graphical elements in the left and right views of the resulting stereoscopic application. When the resulting application is presented on stereoscopic 3D displays, such screen parallax induces retinal disparity, which creates the illusion of floating flat-2D graphical elements. NCLSC does not require any additional native middleware support to run in currently available 3D-enabled TV sets. Moreover, NCLSC can adapt, at run-time, the output application to different display sizes, viewer distances, and viewer preferences, which are usually required for a proper balance between artistic effects and user experience.
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