An Efficient Double-Filter Hardware Architecture for H.264/AVC Deblocking Filtering
F. Tobajas, Gustavo M. Callicó, Pedro A. Pérez, V. de Armas, Roberto Sarmiento
Abstract
F. Tobajas, Gustavo M. Callicó, Pedro A. Pérez, V. de Armas, Roberto Sarmiento
Abstract
In this paper, a novel hardware architecture for real-time implementation of the adaptive deblocking filtering process specified by the H.264/AVC video coding standard, is presented. The deblocking filter is a computationally and data intensive tool resulting in an increased execution time of both the encoding and decoding processes. The proposed architecture is based on a double- filter strategy that results in a significant saving in filtering cycles, memory requirements and gate count when compared with state-of-the-art approaches. The proposed architecture is implemented in synthesizable HDL at RTL level and verified with the reference software. This hardware is designed to be used as part of a complete H.264/A VC video coding system.
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In this paper, a novel hardware architecture for real-time implementation of the adaptive deblocking filtering process specified by the H.264/AVC video coding standard, is presented. The deblocking filter is a computationally and data intensive tool resulting in an increased execution time of both the encoding and decoding processes. The proposed architecture is based on a double- filter strategy that results in a significant saving in filtering cycles, memory requirements and gate count when compared with state-of-the-art approaches. The proposed architecture is implemented in synthesizable HDL at RTL level and verified with the reference software. This hardware is designed to be used as part of a complete H.264/A VC video coding system.
Key concepts: Deblocking filter, Computer science, Coding (social sciences), Decoding methods, Computer hardware, Video decoder, Hardware architecture, Filter (signal processing)