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Robust transmission of progressive image bitstreams based on DCT over broadband wireless channels
作者姓名:王东华  周源华  马曾栋
作者单位:[1]Institute of Image Communication & Information Processing, Shanghai Jiaotong University, Shanghai 200030, China [2]Research Institute of Communication Technology, Harbin Institute of Technology, Harbin 150001, China
摘    要:With the advent of the3rdgeneration wireless com-munication systems(3G)and with the development ofthe standardized work for the4thgeneration wirelesscommunication systems(4G),wireless multimediacommunication services receive considerable attentionfrom bot…

关 键 词:宽带通信  源代码  图象传输  DCT  图象通信
文章编号:1005-9113(2006)02-0219-07
收稿时间:2003-10-16

Robust transmission of progressive image bitstreams based on DCT over broadband wireless channels
WANG Dong-hua,ZHOU Yuan-hua,MA Zeng-dong.Robust transmission of progressive image bitstreams based on DCT over broadband wireless channels[J].Journal of Harbin Institute of Technology,2006,13(2):219-225.
Authors:WANG Dong-hua  ZHOU Yuan-hua  MA Zeng-dong
Abstract:A robust progressive image transmission scheme over broadband wireless fading channels is developed for 4th generation wireless communication systems (4G) in this paper. The proposed scheme is based on space-time block coded orthogonal frequency-division multiplexing ( OFDM ) with 4 transmit antennas and 2 receive antennas and uses a simplified minimum mean square error (MMSE) detector instead of maximum likelihood (ML) detectors. Considering DCT is simpler and more widely applied in the industry than wavelet transforms, a progressive image compression method based on DCT called mean-subtract embedded DCT (MSEDCT) is developed, with a simple mean-subtract method for the redundancy of reorganized DC blocks in addition to a structure similar to the embedded zerotree wavelet coding (EZW) method. Then after analyzing and testing bit importance of the progressive MSEDCT bitstreams, the layered unequal error protection method of joint source-channels coding based on Reed-Solomon (RS) codes is used to protect different parts of bitstreams,providing different QoS assurances and good flexibility. Simulation experiments show our proposed scheme can effectively degrade fading effects and obtain better image transmission effects with 10~20 dB average peak-signal-noise-ratio (PSNR) gains at the median Eb/No than those schemes without space-time coded OFDM or equal error protections with space-time coded OFDM.
Keywords:broadband communication  embedded source coding  image transmission  joint source-channel coding  
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