TY - JOUR
T1 - An adaptable QP-independent approach to rate-distortion optimization for video coding
AU - Yuan, Wu
AU - Niu, Zhen Dong
AU - Lin, Shou Xun
AU - Lin, Zhi Han
AU - Xie, Hui
AU - Luo, Hai Yong
PY - 2011/8
Y1 - 2011/8
N2 - Currently a QP-based Lagrange Multiplier (QP-L) method is widely used to achieve Rate-Distortion optimal joint mode selection and motion estimation in hybrid video coding. In this work, a novel cost function for RDO is presented, which is independent of QP and adaptable to the statistics. Firstly, it is shown there be a linear relationship between λ of the QP-L method and some functionality about statistic for distortion and rate. Thusly, a heuristic model is presented to determine λ with consideration of statistic for distortion and rate, which is after then theoretically verified. It is shown via extensive experiments that the proposed scheme achieves a better coding performance than the traditional QP-based scheme. Moreover, the proposed scheme promises an easy encoding process, due to the fact that it's computation does not involve QP.
AB - Currently a QP-based Lagrange Multiplier (QP-L) method is widely used to achieve Rate-Distortion optimal joint mode selection and motion estimation in hybrid video coding. In this work, a novel cost function for RDO is presented, which is independent of QP and adaptable to the statistics. Firstly, it is shown there be a linear relationship between λ of the QP-L method and some functionality about statistic for distortion and rate. Thusly, a heuristic model is presented to determine λ with consideration of statistic for distortion and rate, which is after then theoretically verified. It is shown via extensive experiments that the proposed scheme achieves a better coding performance than the traditional QP-based scheme. Moreover, the proposed scheme promises an easy encoding process, due to the fact that it's computation does not involve QP.
KW - Hybrid coder control
KW - Lagrange optimization
KW - Rate distortion optimization
UR - http://www.scopus.com/inward/record.url?scp=80052656036&partnerID=8YFLogxK
U2 - 10.3724/SP.J.1016.2011.01519
DO - 10.3724/SP.J.1016.2011.01519
M3 - Article
AN - SCOPUS:80052656036
SN - 0254-4164
VL - 34
SP - 1519
EP - 1527
JO - Jisuanji Xuebao/Chinese Journal of Computers
JF - Jisuanji Xuebao/Chinese Journal of Computers
IS - 8
ER -