26,017 research outputs found
A Convolutional Neural Network Approach for Half-Pel Interpolation in Video Coding
Motion compensation is a fundamental technology in video coding to remove the
temporal redundancy between video frames. To further improve the coding
efficiency, sub-pel motion compensation has been utilized, which requires
interpolation of fractional samples. The video coding standards usually adopt
fixed interpolation filters that are derived from the signal processing theory.
However, as video signal is not stationary, the fixed interpolation filters may
turn out less efficient. Inspired by the great success of convolutional neural
network (CNN) in computer vision, we propose to design a CNN-based
interpolation filter (CNNIF) for video coding. Different from previous studies,
one difficulty for training CNNIF is the lack of ground-truth since the
fractional samples are actually not available. Our solution for this problem is
to derive the "ground-truth" of fractional samples by smoothing high-resolution
images, which is verified to be effective by the conducted experiments.
Compared to the fixed half-pel interpolation filter for luma in High Efficiency
Video Coding (HEVC), our proposed CNNIF achieves up to 3.2% and on average 0.9%
BD-rate reduction under low-delay P configuration.Comment: International Symposium on Circuits and Systems (ISCAS) 201
Nuclear stopping and sideward-flow correlation from 0.35A to 200A GeV
The correlation between the nuclear stopping and the scale invariant nucleon
sideward flow at energies ranging from those available at the GSI heavy ion
synchrotron (SIS) to those at the CERN Super Proton Synchrotron (SPS) is
studied within ultrarelativistic quantum molecular dynamics (UrQMD). The
universal behavior of the two experimental observables for various colliding
systems and scale impact parameters are found to be highly correlated with each
other. As there is no phase transition mechanism involved in the UrQMD, the
correlation may be broken down by the sudden change of the bulk properties of
the nuclear matter, such as the formation of quark-gluon plasma (QGP), which
can be employed as a QGP phase transition signal in high-energy heavy ion
collisions. Furthermore, we also point out that the appearance of a breakdown
of the correlation may be a powerful tool for searching for the critical point
on the QCD phase diagram.Comment: 5 pages, 4 figure
Scalable Bell inequalities for multiqubit systems
Based on Clauser-Horner-Shimony-Holt inequality, we show a fruitful method to
exploit Bell inequalities for multipartite qubit systems. These Bell
inequalities are designed with a simpler architecture tailored to experimental
demonstration. Under the optimal setting we derive a set of compact Mermin-type
inequalities and discuss quantum violations for generalized
Greenberger-Horne-Zeilinger (GGHZ) states. Also, we reveal relationship between
quantum nonlocality and four-partite entanglement for four-qubit GGHZ states.Comment: 4 pages, 1 figur
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