Optimized Packet Scheduling in Multiview Video Navigation Systems
Laura Toni, Thomas Maugey, Pascal Frossard

TL;DR
This paper introduces a dynamic, correlation-aware packet scheduling method for multiview video systems that optimizes resource use and enhances user experience during interactive navigation.
Contribution
It proposes a novel rate-distortion model and a trellis-based optimization algorithm for adaptive packet scheduling in multiview video transmission.
Findings
Significant performance gains over baseline policies.
Adaptive scheduling aligns with user navigation paths.
Reduces distortion variations for improved user experience.
Abstract
In multiview video systems, multiple cameras generally acquire the same scene from different perspectives, such that users have the possibility to select their preferred viewpoint. This results in large amounts of highly redundant data, which needs to be properly handled during encoding and transmission over resource-constrained channels. In this work, we study coding and transmission strategies in multicamera systems, where correlated sources send data through a bottleneck channel to a central server, which eventually transmits views to different interactive users. We propose a dynamic correlation-aware packet scheduling optimization under delay, bandwidth, and interactivity constraints. The optimization relies both on a novel rate-distortion model, which captures the importance of each view in the 3D scene reconstruction, and on an objective function that optimizes resources based on…
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Taxonomy
TopicsVideo Coding and Compression Technologies · Advanced Data Compression Techniques · Advanced Vision and Imaging
