Motion-Compensated Coding and Frame-Rate Up-Conversion: Models and Analysis
Yehuda Dar, Alfred M. Bruckstein

TL;DR
This paper models and analyzes the effects of frame-rate and bit-rate on motion estimation and compensation in video coding and frame-rate up-conversion, providing theoretical insights and practical comparisons.
Contribution
It introduces a comprehensive theoretical framework for modeling MC-prediction errors in coding and FRUC, including autocorrelation analysis and separable autocorrelation functions.
Findings
Linear relation between MC-prediction error variance and temporal-distance
Inverse effect of frame-rate on MC performance
Validation of models with experimental results
Abstract
Block-based motion estimation (ME) and compensation (MC) techniques are widely used in modern video processing algorithms and compression systems. The great variety of video applications and devices results in numerous compression specifications. Specifically, there is a diversity of frame-rates and bit-rates. In this paper, we study the effect of frame-rate and compression bit-rate on block-based ME and MC as commonly utilized in inter-frame coding and frame-rate up conversion (FRUC). This joint examination yields a comprehensive foundation for comparing MC procedures in coding and FRUC. First, the video signal is modeled as a noisy translational motion of an image. Then, we theoretically model the motion-compensated prediction of an available and absent frames as in coding and FRUC applications, respectively. The theoretic MC-prediction error is further analyzed and its…
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Taxonomy
TopicsVideo Coding and Compression Technologies · Advanced Image Processing Techniques · Advanced Vision and Imaging
