Title :
Efficient layered video delivery over multicarrier systems using optimized embedded modulation
Author :
Pradhan, Sandeep S. ; Ramchandran, Kannan
Author_Institution :
Beckman Inst. for Adv. Sci. & Technol., Illinois Univ., Urbana, IL, USA
Abstract :
We tackle the problem of efficient image transmission over multi-carrier modulation (MCM) systems, proposing the use of a layered or multiresolution (MR) framework. In this work, we treat the source as being characterized by multiple layers of importance, and therefore deserving of multiple levels of noise immunity, i.e. having different BER requirements. We present the idea of embedded multi-carrier modulation (EMCM) as a very effective way of achieving this, and introduce a fast table-lookup based power allocation algorithm that optimizes the multicarrier constellation design in terms of maximizing the deliverable throughput bitrates for the different resolution layers, subject to a total power constraint. Simulation results of our EMCM system reveal substantial gains (up to about 25%) in deliverable bit rates over optimized TDM-based MCM designs. Further, in typical image transmission simulations using an embedded wavelet image coder, the EMCM approach yields almost 3 dB gains in delivered quality over conventional single-resolution MCM systems
Keywords :
image resolution; interference suppression; optical modulation; optimisation; table lookup; transform coding; video coding; visual communication; wavelet transforms; 3 dB; BER requirements; EMCM; MCM; TDM-based MCM designs; deliverable throughput bitrates; efficient layered video delivery; embedded multi-carrier modulation; embedded wavelet image coder; image transmission; importance layers; layered framework; multi-carrier modulation systems; multicarrier constellation design; multicarrier systems; multiresolution framework; noise immunity; optimized embedded modulation; resolution layers; table-lookup based power allocation algorithm; Algorithm design and analysis; Bit error rate; Bit rate; Constraint optimization; Design optimization; Gain; Image communication; Image resolution; Noise level; Throughput;
Conference_Titel :
Image Processing, 1997. Proceedings., International Conference on
Conference_Location :
Santa Barbara, CA
Print_ISBN :
0-8186-8183-7
DOI :
10.1109/ICIP.1997.632155