Long-term memory motion-compensated prediction
نویسندگان
چکیده
Long-term memory motion-compensated prediction extends the spatial displacement vector utilized in block-based hybrid video coding by a variable time delay permitting the use of more frames than the previously decoded one for motioncompensated prediction. The long-term memory covers several seconds of decoded frames at the encoder and decoder. The use of multiple frames for motion compensation in most cases provides significantly improved prediction gain. The variable time delay has to be transmitted as side information requiring an additional bit rate which may be prohibitive when the size of the long-term memory becomes too large. Therefore, we control the bit rate of the motion information by employing rateconstrained motion estimation. Simulation results are obtained by integrating long-term memory prediction into an H.263 codec. Reconstruction PSNR improvements up to 2 dB for the Foreman sequence and 1.5 dB for the Mother–Daughter sequence are demonstrated in comparison to the TMN-2.0 H.263 coder. The PSNR improvements correspond to bit-rate savings up to 34 and 30%, respectively. Mathematical inequalities are used to speed up motion estimation while achieving full prediction gain.
منابع مشابه
Long - Term Memory Motion
| Long-term memory motion-compensated prediction extends the spatial displacement vector utilized in block-based hybrid video coding by a variable time delay permitting the use of more frames than the previously decoded one for motion compensated prediction. The long-term memory covers several seconds of decoded frames at encoder and decoder. The use of multiple frames for motion compensation i...
متن کاملMotion-Compensating Long-Term Memory Prediction
Motion-compensating long-term memory prediction extends the spatial dislplacement utilized in block-based hybrid video coding by a variable time delay permitting the use of more frames than the previously decoded one for motion compensaition. The long-term memory covers the decoded franies of some seconds at encoder and decoder. We investiflate the influence of memory size in our motion compens...
متن کاملFast Search for Long-Term Memory Motion-Compensated Prediction
Long-termmemorymotion-compensated prediction extends the spatial displacement utilized in block-based hybrid video coding by a frame reference parameter permitting the use of decoded frames of some seconds accommodated in a sliding window over time. This extension of the motion search range signi cantly increases the motion-compensated prediction gain. However, the amount of motion search relat...
متن کاملRate-Constrained Multi-Hypothesis Motion-Compensated Prediction for Video Coding
Multi-hypothesis prediction extends motion compensation with one prediction signal to the linear superposition of several motioncompensated prediction signals with the result of increased coding efficiency. The multiple hypotheses in this paper are blocks in past decoded frames. These blocks are referenced by individual motion vectors and picture reference parameters incorporating long-term mem...
متن کاملLong-Term Memory Motion-Compensated Prediction for Robust Video Transmission
Long-term memory prediction extends the spatial displacement vector utilized in hybrid video coding by a variable time delay permitting the use of more than one reference frame for motion compensation. This extension provides improved rate-distortion performance. However, motion compensation in combination with transmission errors leads to temporal error propagation that occurs when the referen...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- IEEE Trans. Circuits Syst. Video Techn.
دوره 9 شماره
صفحات -
تاریخ انتشار 1999