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A. 多媒体应用的高效率和高效率的电力结构
原标题:Power efficient and Speed efficient architecture for Multimedia Applications

我正致力于评估一个包含以下特点的内在加工体结构:

  • 8 SIMD co-processing DSP kind of cores,
  • Each core can do a 8 way SIMD
  • Each core is a 8 execution slot VLIW as well.

我想利用高摄像机(H.264、1080p、60fps)或3D录像带播放该节目。 我正试图进行建筑勘探,找到建筑。

  • 加工商的精华本应有助于在电/循环/流传有效方式中进行多媒体(Video/Image)信号处理应用。

  • 哪些外围、重要结构,包括切记或内部记忆;额外组别指示有助于有效执行多媒体应用守则

  • 多媒体(Video/Image)处理应用程序的最高效和快速程序结构

PS:它的权力必须低,因为它适用于便携式应用。

任何要点(文件/博客)都将是有益的。

谢谢。

- AD。

最佳回答

我认为,“多媒体(Video/Image)处理的最高效和快速处理器结构”是开展具体视频/图像编码操作的特别硬件核心。 举例来说,最快的标语4是硬质,是固定的?

For example, there is scheme of VP9 hardware decoder: http://www.webmproject.org/hardware/vp9/ Scheme of Google s VP9 hardware decoder

It even has no any big CPU/MCU. The encoder is more complex and less public thing... But there is some project: http://hardh264.sourceforge.net/H264-encoder-manual.html with scheme:

“Ze夏视频H.264

http://www.webmproject.org/hardware/vp8/“rel=“nofollow noreferer” http://www.webmproject.org/hardware/vp8/。

“WebM

同样,没有大的万国邮联。 并且,你可以检查设计师分离哪些阶段,并思考你如何在万国邮联中执行这些阶段:防止母婴传播、量化、预测、窒息性编码、YUV/RBG转换等。

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