Title :
Maximum Likelihood Laplacian Correlation Channel Estimation in Layered Wyner-Ziv Coding
Author :
Deligiannis, Nikos ; Munteanu, Adrian ; Shuang Wang ; Cheng, Shukang ; Schelkens, Peter
Author_Institution :
Dept. of Electron. & Inf., Vrije Univ. Brussel, Brussels, Belgium
Abstract :
The distributed source coding theory teaches that efficient compression can be achieved by exploiting the correlation between encoded sources at the decoder only. A critical issue in this coding paradigm is how to accurately estimate the correlation statistics at the decoder. This paper proposes a novel correlation channel estimation method designed for generic layered Wyner-Ziv (WZ) coding. Driven by real-life applications, i.e., video coding, the correlation noise is assumed to be memoryless zero-mean Laplacian with a block-stationary behavior. Unlike existing methods, the proposed technique derives a novel maximum likelihood estimate of the noise scaling parameter per stationarity block. Adhering to layered coding, the derived estimate is successively refined as more stages are decoded. The Crámer-Rao lower bound (CRLB) for our estimator is derived and the mean squared error performance of the proposed successive refinement algorithm is evaluated through simulations. Apart from achieving an accuracy close to the derived CRLB, the proposed algorithm is shown to yield a WZ rate-distortion performance approaching the ideal but unrealistic scenario where the decoder knows a priori the correlation statistics. Moreover, the proposed technique has been integrated into our latest WZ video codec for wireless capsule endoscopy. Experimentation reveals that the proposed method delivers improved compression performance compared to state-of-the-art techniques, while simultaneously reducing the overall decoding complexity.
Keywords :
channel coding; channel estimation; correlation methods; maximum likelihood estimation; mean square error methods; rate distortion theory; source coding; statistical analysis; CRLB; Crámer-Rao lower bound; WZ coding; WZ rate-distortion performance; block-stationary behavior; correlation noise; correlation statistic estimation; decoding complexity; distributed source coding theory; layered Wyner-Ziv coding; maximum likelihood Laplacian correlation channel estimation method; mean squared error performance; memoryless zero-mean Laplacian; noise scaling parameter per stationarity block estimation; successive refinement algorithm; video coding; wireless capsule endoscopy; Correlation; Encoding; Maximum likelihood decoding; Maximum likelihood estimation; Noise; Quantization (signal); Correlation channel estimation (CCE); Crámer-Rao lower bound (CRLB); layered Wyner-Ziv (WZ) coding; maximum likelihood estimate (MLE); wireless capsule endoscopy;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2013.2295556