Learned Wavelet Video Coding using Motion Compensated Temporal Filtering
We present an end-to-end trainable wavelet video coder based on motion-compensated temporal filtering (MCTF). Thereby, we introduce a different coding scheme for learned video compression, which is currently dominated by residual and conditional coding approaches. By performing discrete wavelet transforms in temporal, horizontal, and vertical dimension, we obtain an explainable framework with spatial and temporal scalability. We focus on investigating a novel trainable MCTF module that is implemented using the lifting scheme. We show how multiple temporal decomposition levels in MCTF can be considered during training and how larger temporal displacements due to the MCTF coding order can be handled. Further, we present a content adaptive extension to MCTF which adapts to different motion strengths during inference. In our experiments, we compare our MCTF-based approach to learning-based conditional coders and traditional hybrid video coding. Especially at high rates, our approach has promising rate-distortion performance. Our method achieves average Bj{\o}ntegaard Delta savings of up to 21% over HEVC on the UVG data set and thereby outperforms state-of-the-art learned video coders.
Code (0)
등록된 구현이 없습니다.
Tasks
Video CompressionMethods 이 논문이 사용한 방법론
Similar Papers 제목 키워드 기반
Variable Rate Learned Wavelet Video Coding using Temporal Layer Adaptivity
Learned wavelet video coders provide an explainable framework by performing discrete wavelet transforms in temporal, horizontal, and vertical dimensions. With a temporal transform based on motion-compensated temporal fil…
Motion-Compensated Temporal Filtering for Critically-Sampled Wavelet-Encoded Images
We propose a novel motion estimation/compensation (ME/MC) method for wavelet-based (in-band) motion compensated temporal filtering (MCTF), with application to low-bitrate video coding. Unlike the conventional in-band MCT…
Motion EstimationImproving mesh-based motion compensation by using edge adaptive graph-based compensated wavelet lifting for medical data sets
Medical applications like Computed Tomography (CT) or Magnetic Resonance Tomography (MRT) often require an efficient scalable representation of their huge output volumes in the further processing chain of medical routine…
Computed Tomography (CT)Motion CompensationEfficient lossless coding of highpass bands from block-based motion compensated wavelet lifting using JPEG 2000
Lossless image coding is a crucial task especially in the medical area, e.g., for volumes from Computed Tomography or Magnetic Resonance Tomography. Besides lossless coding, compensated wavelet lifting offers a scalable …
Analysis of displacement compensation methods for wavelet lifting of medical 3-D thorax CT volume data
A huge advantage of the wavelet transform in image and video compression is its scalability. Wavelet-based coding of medical computed tomography (CT) data becomes more and more popular. While much effort has been spent o…
Computed Tomography (CT)Video Compression