Improvements on Rate-Distortion Performance of H.264 Rate Control in Low Bit Rate Video Coding
Shumin Zhou, Jintao Li, Yongdong Zhang
Abstract
Shumin Zhou, Jintao Li, Yongdong Zhang
Abstract
This paper points out some defects in the techniques used in H.264 rate control and presents two new techniques to improve them. The improved scheme has the following main features: 1) the bits allocated to each P-frame is proportional to the local motion in it, i.e, more bits are allocated to a frame if the local motion in it is stronger; 2) the quantization paramter (QP) calculation is based on a simple encoding complexity prediction scheme, which is more robust and simple than the quadratic model used by H.264 in low bit rate video coding. Simulation results show that compared to rate control scheme in H.264, the improved scheme has significantly improved R-D performance (up to 1.29dB).
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper points out some defects in the techniques used in H.264 rate control and presents two new techniques to improve them. The improved scheme has the following main features: 1) the bits allocated to each P-frame is proportional to the local motion in it, i.e, more bits are allocated to a frame if the local motion in it is stronger; 2) the quantization paramter (QP) calculation is based on a simple encoding complexity prediction scheme, which is more robust and simple than the quadratic model used by H.264 in low bit rate video coding. Simulation results show that compared to rate control scheme in H.264, the improved scheme has significantly improved R-D performance (up to 1.29dB).
Key concepts: Computer science, Bit rate, Quantization (signal processing), Coding (social sciences), Rate distortion, Algorithm, Rate–distortion theory, Harmonic Vector Excitation Coding