Video decoder reconfigurations and AVS extensions in the new MPEG reconfigurable video coding framework

Dandan Ding, Lu Yu, Christophe Lucarz, M. Mattavelli
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引用次数: 11

Abstract

Multimedia devices are now required to support multiple coding standards. Supporting seamlessly both interoperability between standards and flexibility for application specific optimizations is a great challenge for current video coding technology. After a brief description of the new MPEG reconfigurable video coding (RVC) framework, this paper describes possible decoder reconfigurations within this framework. The essential idea behind this framework is to reuse as most as possible the algorithms or architectures which are common to several different standards and to reconfigure video decoders in a flexible way at the coding tool level. A coding tool is an encapsulated piece of algorithm. Reconfiguration can address specific optimization objectives such as improvement in colour reproduction or higher performance at high bitrate. These simple examples show that the tool level definition of the video tool library is flexible enough to support the incremental introduction of new coding algorithms, the usage of algorithms taken from different video standards (i.e. AVS is provided in one example), and the possibility of high level reconfigurations. Thus, this paper demonstrates that the RVC framework offers a great flexibility in selecting coding tools for decoder reconfigurations to satisfy a wide variety of different applications.
视频解码器重新配置和AVS扩展在新的MPEG可重构视频编码框架
多媒体设备现在需要支持多种编码标准。对于当前的视频编码技术来说,无缝地支持标准之间的互操作性和特定于应用程序的优化灵活性是一个巨大的挑战。在简要描述了新的MPEG可重构视频编码(RVC)框架之后,本文描述了在该框架内可能的解码器重构。该框架背后的基本思想是尽可能重用几种不同标准的通用算法或架构,并在编码工具级别以灵活的方式重新配置视频解码器。编码工具是一种被封装的算法。重新配置可以解决特定的优化目标,如改善色彩再现或在高比特率下提高性能。这些简单的示例表明,视频工具库的工具级别定义足够灵活,可以支持增量引入新的编码算法,使用来自不同视频标准的算法(例如,在一个示例中提供了AVS),以及高层重新配置的可能性。因此,本文证明了RVC框架在为解码器重新配置选择编码工具方面提供了很大的灵活性,以满足各种不同的应用。
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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