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Programmable Deblocking Filter Architecture for a VC-1 Video Decoder

机译:VC-1视频解码器的可编程解块滤波器架构

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摘要

Although the current standards (MPEG1, MPEG2, MPEG4, H.261, H.263, and H.264/MPEG4 AVC) as well as the recent VC-1, present the same basic functional elements, i.e., prediction, transformation, quantization, and entropy encoding, important changes occur in the details of each functional element. One of the details concerns the elimination of the loss in interblock correlation due to block-based prediction, transformation, and quantization. In order to overcome the loss in blocking artifacts, a deblocking filtering method is necessary to maximize coding performance and consequently improve image quality. This letter describes a programmable VC-1 deblocking filter architecture with capabilities to support different standards. The architecture has been modeled, simulated, and implemented at the register transfer level. Results show a threefold performance improvement as compared to solutions where filtering algorithms are otherwise not hardwired. Results also point to parallelism based on existing data flow, and show that real-time requirements can be met.
机译:尽管当前的标准(MPEG1,MPEG2,MPEG4,H.261,H.263和H.264 / MPEG4 AVC)以及最新的VC-1,都具有相同的基本功能元素,即预测,变换,量化和熵编码,每个功能元素的细节都会发生重要变化。细节之一涉及消除由于基于块的预测,变换和量化而导致的块间相关性的损失。为了克服分块伪像的损失,需要一种分块滤波方法以最大化编码性能并因此提高图像质量。这封信描述了具有支持不同标准能力的可编程VC-1解块滤波器架构。该架构已在寄存器传输级别进行了建模,仿真和实现。与不使用硬连线过滤算法的解决方案相比,结果表明性能提高了三倍。结果还指出基于现有数据流的并行性,并表明可以满足实时要求。

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