Correlation Noise-Based Unequal Error Protected Rate-Adaptive Codes for Distributed Video Coding

Distributed video coding (DVC) is a paradigm that can shift most of the computational intensive tasks from the encoder to the decoder. This allows for the design of low complexity encoders that can be deployed in devices equipped with limited resources. However, the compression efficiency obtained u...

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Vydáno v:IEEE transactions on circuits and systems for video technology Ročník 24; číslo 1; s. 127 - 140
Hlavní autoři: Micallef, Jeffrey J., Farrugia, Reuben A., Debono, Carl James
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York, NY IEEE 01.01.2014
Institute of Electrical and Electronics Engineers
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ISSN:1051-8215, 1558-2205
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Abstract Distributed video coding (DVC) is a paradigm that can shift most of the computational intensive tasks from the encoder to the decoder. This allows for the design of low complexity encoders that can be deployed in devices equipped with limited resources. However, the compression efficiency obtained using practical DVC codecs are still distant from those of traditional predictive video coding schemes such as H.264/AVC. One of the limitations of the existing DVC architectures is that they consider the correlation noise to be randomly distributed across the whole video frame. This paper shows that the Syner-Ziv (WZ) values that are closer to the endpoints of the quantization intervals have a higher probability of producing incorrect side information (SI) predictions. Thus, through this knowledge, rate-adaptive low-density parity-check accumulate codes that provide a higher level of protection to the unreliable SI bits can be exploited. Experimental results show that the proposed scheme can reduce the WZ bit-rate up to 13% relative to the state-of-the-art DISCOVER architecture when considering interpolation techniques and by up to 0.9 dB for extrapolation techniques.
AbstractList Distributed video coding (DVC) is a paradigm that can shift most of the computational intensive tasks from the encoder to the decoder. This allows for the design of low complexity encoders that can be deployed in devices equipped with limited resources. However, the compression efficiency obtained using practical DVC codecs are still distant from those of traditional predictive video coding schemes such as H.264/AVC. One of the limitations of the existing DVC architectures is that they consider the correlation noise to be randomly distributed across the whole video frame. This paper shows that the Syner-Ziv (WZ) values that are closer to the endpoints of the quantization intervals have a higher probability of producing incorrect side information (SI) predictions. Thus, through this knowledge, rate-adaptive low-density parity-check accumulate codes that provide a higher level of protection to the unreliable SI bits can be exploited. Experimental results show that the proposed scheme can reduce the WZ bit-rate up to 13% relative to the state-of-the-art DISCOVER architecture when considering interpolation techniques and by up to 0.9 dB for extrapolation techniques.
Author Debono, Carl James
Micallef, Jeffrey J.
Farrugia, Reuben A.
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Issue 1
Keywords Video coding
Performance evaluation
Wyner―Ziv (WZ) video coding
State of the art
Correlation noise modeling
Error rate
Information rate
Modeling
Correlation method
Video signal processing
Codec
Signal quantization
Traffic control
Parity check codes
Random medium
low-density parity-check codes
Coding circuit
Flow rate regulation
Teletraffic
Quantum effect
Information transmission
Adaptive coding
Interpolation
Traffic management
distributed video coding (DVC)
Predictive coding
Error correcting code
Wyner Ziv problem
Language English
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PublicationTitle IEEE transactions on circuits and systems for video technology
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Snippet Distributed video coding (DVC) is a paradigm that can shift most of the computational intensive tasks from the encoder to the decoder. This allows for the...
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SubjectTerms Applied sciences
Circuit properties
Coding, codes
Correlation
Correlation noise modeling
Decoding
distributed video coding (DVC)
Electric, optical and optoelectronic circuits
Electronic circuits
Electronics
Encoding
Exact sciences and technology
Image processing
Information, signal and communications theory
low-density parity-check codes
Parity check codes
Reliability
Sampling, quantization
Signal and communications theory
Signal convertors
Signal processing
Silicon
Syner-Ziv (WZ) video coding
Telecommunications and information theory
Video coding
Title Correlation Noise-Based Unequal Error Protected Rate-Adaptive Codes for Distributed Video Coding
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