Hevc Inverse Transform Architecture Utilizing Coefficient Sparsity

2015 IEEE International Conference on Image Processing (ICIP)(2015)

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摘要
The inverse transform function of the HEVC Decoder has grown greatly in complexity with the addition of larger transform sizes and recent works have focused on efficient architectures that can achieve the required throughput. In this work we make the observation that a majority of the coefficients in a typical transform operation is zero, and therefore has no impact on the final outcome. We propose an architecture that can efficiently operate on such sparse matrices and introduce a scheduling strategy which completes a 2D IDCT with bare minimum iterations, with the added advantage of being able to integrate seamlessly with the entropy decoder without a coefficient reordering buffer. Experiments show that although the performance of this approach is scalable with the bit rate, a 120 MHz operating frequency is sufficient to handle QHD @ 48 Mbps, which is less than one third of the frequency requirement of prior work.
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关键词
HEVC inverse transform architecture,coefficient sparsity,inverse transform function,HEVC decoder,sparse matrices,scheduling strategy,2D IDCT,entropy decoder,bit rate,discrete cosine transform,high efficiency video coding
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