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The MPEG-4 Fine-Grained Scalable Video Coding Method for Multimedia Streaming Over IP Hayder Radha,Mihaela van der Schaar and Yingwei Chen IEEE TRANSACTIONS ON MULTIMEDIA, VOL.3, NO.1,MARCH 2001
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Outline Introduction SNR FGS Video Coding Method FGS Coding with Adaptive Quantization Hybrid Temporal-SNR Scalability with an All FGS Structure Conclusions
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Introduction Video-Coding and Networking Minimal real-time processing and rate control when large number of unicast Highly adaptable to unpredictable bandwidth Low-complexity decoding and low- memory requirements
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Introduction(2) Able to support both multicast and unicast applications Scalable bitstream must be resilient to packet loss events
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SNR FGS Video Coding [ R min = R b, R max = R b + R e ]
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SNR FGS Video Coding(2)
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SNR FGS Video Coding - encoder Two encoders base layer->motion compensation enhancement layer->fine-granular Each DCT FGS-residual frame consists of N BP bitplanes
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SNR FGS Video Coding - scanning order
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Architecture for the SNR FGS Video Coding -decoder
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SNR FGS Video Coding - performance Compared with traditional SNR scalability video coding
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SNR FGS Video Coding - performance(2)
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SNR FGS Video Coding - performance(3)
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SNR FGS Video Coding - conclusions FGS exploits temporal redundancy only at the base layer FGS is good for high motion sequences such as “movie trailers”,certain commercials and news clips with high-action content
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SNR FGS Video Coding - conclusions Base-layer could have a major impact on the overall performance of FGS [R 2,R max ] could be significantly better than the average performance over the wider range[R 1,R max ]
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FGS Coding with Adaptive Quantization FGS-based AQ is achieved through bitplane shifting Selected macroblocks within an FGS enhancement layer frame Selected coefficients within the 8 * 8 blocks
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Adaptive Quantization- Selective Enhancement
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Adaptive Quantization- frequency weighting
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Adaptive Quantization- combine SE with FW
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Adaptive Quantization-notice SE : macroblock-by-macroblock basis FW : use the same FW matrix Selective enhancement is a relative operation Up-shifting operation does not guarantee that a particular SE macroblock gets scanned earlier(MSB)
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Adaptive Quantization- evaluation Not improve the rate-distortion performance,but rather to improve the visual quality SE can be used to enhance a particular region FW can reduce some of blockiness, but may softening some of the sharp edges and other finedetails
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Adaptive Quantization- evaluation(2)
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Hybrid Temporal-SNR Scalability Temporal scalability : Enhance the motion smoothness of compressed video F = F BL + F EL Provide the flexibility of choosing between temporal scalability and SNR scalability (Users’ performance and real-time bandwidth)
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all-FGS hybrid temporal-SNR scalability structure
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Architecture for the all-FGS hybrid temporal-SNR scalability encoder
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Architecture for the all-FGS hybrid temporal-SNR scalability decoder
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Performance Evaluation of the Hybrid FGS Scalability Method
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Conclusions MPEG-4 FGS framework Supporting unicast and multicast Internet video application Adaptive quantization Hybrid temporal-SNR scalability method
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