TY - GEN
T1 - Analytics-Modulated Coding of Surveillance Video
AU - Cheok, Lai-Tee
AU - Gagvani, Nikhil
PY - 2010
Y1 - 2010
N2 - Video surveillance systems increasingly use H.264 coding to achieve 24 x 7 recording and streaming. However, with the proliferation of security cameras, and the need to store several months of video, bandwidth and storage costs can be significant. We propose a new compression technique to significantly improve the coding efficiency of H.264 for surveillance video. Video content is analyzed and video semantics are extracted using video analytics algorithms such as segmentation, classification and tracking. In contrast to existing approaches, our Analytics-Modulated Compression (AMC) scheme does not require coding of object shape information and produces bit-streams that are standards-compliant and not limited to specific H.264 profiles. Extensive experiments were conducted involving real surveillance scenes. Results show that our technique achieves compression gains of 67% over JM. We also introduced AMC Rate Control (AMC RC) which allocates bits in response to scene dynamics. AMC RC is shown to significantly reduce artifacts in constant-bitrate video at low bitrates.
AB - Video surveillance systems increasingly use H.264 coding to achieve 24 x 7 recording and streaming. However, with the proliferation of security cameras, and the need to store several months of video, bandwidth and storage costs can be significant. We propose a new compression technique to significantly improve the coding efficiency of H.264 for surveillance video. Video content is analyzed and video semantics are extracted using video analytics algorithms such as segmentation, classification and tracking. In contrast to existing approaches, our Analytics-Modulated Compression (AMC) scheme does not require coding of object shape information and produces bit-streams that are standards-compliant and not limited to specific H.264 profiles. Extensive experiments were conducted involving real surveillance scenes. Results show that our technique achieves compression gains of 67% over JM. We also introduced AMC Rate Control (AMC RC) which allocates bits in response to scene dynamics. AMC RC is shown to significantly reduce artifacts in constant-bitrate video at low bitrates.
KW - Image Processing
UR - https://ieeexplore.ieee.org/servlet/opac?punumber=1000477
UR - https://ieeexplore.ieee.org/document/5583327
UR - https://www.scopus.com/pages/publications/78349251634
U2 - 10.1109/ICME.2010.5583327
DO - 10.1109/ICME.2010.5583327
M3 - Conference contribution
SN - 9781424474936
SN - 9781424474912
SN - 9781424474929
T3 - Proceedings (IEEE International Conference on Multimedia and Expo. Online)
SP - 127
EP - 132
BT - 2010 IEEE International Conference on Multimedia and Expo
A2 - Institute of Electrical, Editor:
A2 - Engineers, Electronics
PB - Institute of Electrical and Electronics Engineers (IEEE)
CY - Piscataway, United States of America
T2 - ICME 2010: 2010 IEEE International Conference on Multimedia and Expo
Y2 - 28 January 2002 through 1 February 2002
ER -