DocumentCode
3181730
Title
Video transmission over CDMA channels with bit-rate allocation and power optimization
Author
Mohammad, Usama Sayed ; Ramzy, Safwat Mohamed
Author_Institution
Assiut Univ., Assiut
fYear
2007
fDate
16-18 Dec. 2007
Firstpage
45
Lastpage
52
Abstract
In this paper, a novel video transmission scheme for transmission of three Dimensional Set Partitioning in Hierarchical Trees (3D-SPIHT) video coding streams over the CDMA channels is proposed. The main idea behind this scheme is that the output of the 3D-SPIHT video coding will be send related to its significant information. The modified 3D-SPIHT coder will generate three groups of bitstream. The significant bits, the sign bits, and the refinement bits are transmitted in three different groups. The optimal Unequal Error Protection (UEP) of these groups is proposed. The RS code is used to test the effectiveness of the proposed scheme. In addition to UEP, the power optimization over the Code-Division Multiple Access channels (CDMA) is done which increases the performance of our system. The simulation results indicate that the proposed scheme provides significantly better PSNR performance in comparison with the well-known robust coding schemes.
Keywords
code division multiple access; telecommunication channels; video coding; CDMA channels; bit-rate allocation; code division multiple access channels; power optimization; set partitioning in hierarchical trees; unequal error protection; video coding; video transmission; Channel coding; Error correction codes; Forward error correction; Multiaccess communication; PSNR; Power system protection; Streaming media; Video coding; Video compression; Wireless sensor networks; 3D-SPIHT Coding; Channel Coding; RS Codes; Rate Allocation; Unequal Error Protection (UEP);
fLanguage
English
Publisher
ieee
Conference_Titel
Information and Communications Technology, 2007. ICICT 2007. ITI 5th International Conference on
Conference_Location
Cairo
Print_ISBN
978-1-4244-1430-7
Type
conf
DOI
10.1109/ITICT.2007.4475615
Filename
4475615
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