Title :
A scalable source coder for a hybrid HDTV terrestrial broadcasting system
Author :
Wee, S.J. ; Polley, M.O. ; Schreiber, W.F.
Author_Institution :
Res. Lab. of Electron., MIT, Cambridge, MA, USA
Abstract :
A scalable source coder was designed for a hybrid HDTV terrestrial broadcasting system. The hybrid combination of analog and digital methods allows for both high video compression ratios and efficient utilization of the available channel capacity. Efficient channel utilization enables closer receivers to decode high quality video, and allows further receivers to decode natural looking, though lower quality video. The system uses joint source/channel coding to deliver different video components with degrees of integrity reflecting their perceptual importance. Motivation is given for hybrid transmission and analog/digital coding methods. Details of the scalable source coder are provided with a description of its key features, which include pyramid filtering and hybrid video coding. Furthermore, fundamental differences between conventional digital video compression schemes and the proposed scalable hybrid approach are highlighted. Finally, frames of video produced by a computer simulation of the hybrid HDTV system are shown, demonstrating the feasibility of such a system.<>
Keywords :
channel capacity; channel coding; high definition television; low-pass filters; source coding; television broadcasting; video coding; analog methods; analog/digital coding methods; channel capacity; channel coding; computer simulation; digital methods; digital video compression schemes; efficient channel utilization; high video compression ratios; hybrid HDTV terrestrial broadcasting system; hybrid transmission; hybrid video coding; pyramid filtering; scalable hybrid approach; scalable source coder; Broadcast technology; Channel capacity; Channel coding; Decoding; Digital video broadcasting; Filtering; HDTV; Laboratories; Video coding; Video compression;
Conference_Titel :
Image Processing, 1994. Proceedings. ICIP-94., IEEE International Conference
Conference_Location :
Austin, TX, USA
Print_ISBN :
0-8186-6952-7
DOI :
10.1109/ICIP.1994.413311