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Joint Distortion Model for Progressive Image Transmission Using Error Correcting Arithmetic Codes

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【作者】 刘军清孙军龙沪强

【Author】 LIU Jun-qing, SUN Jun , LONG Hu-qiang (Department of Electronics Engineering, Shanghai Jiaotong University, Shanghai 200240, China)

【机构】 Department of Electronics Engineering Shanghai Jiaotong UniversityDepartment of Electronics EngineeringShanghai Jiaotong UniversityDepartment of Electronics Engineering Shanghai Jiaotong UniversityShanghai 200240 China Shanghai 200240 China Shanghai 200240 China

【摘要】 <正>A novel joint source channel distortion model was proposed, which can essentially estimate the average distortion in progressive image transmission. To improve the precision of the model, the redundancy generated by a forbidden symbol in the arithmetic codes is used to distinguish the quantization distortion and the channel distortion, all the coefficients from the first error one to the end of the sequence are set to be a value within the variance range of the coefficients instead of zero, then the error propagation coming from the entropy coding can be essentially estimated, which is disregarded in the most conventional joint source channel coding (JSCC) systems. The precision of the model in terms of average peak-signal-to-noise has been improved about 0.5 dB compared to classical works. An efficient unequal error protection system based on the model is developed, and can be used in the wireless communication systems.

【Abstract】 A novel joint source channel distortion model was proposed, which can essentially estimate the average distortion in progressive image transmission. To improve the precision of the model, the redundancy generated by a forbidden symbol in the arithmetic codes is used to distinguish the quantization distortion and the channel distortion, all the coefficients from the first error one to the end of the sequence are set to be a value within the variance range of the coefficients instead of zero, then the error propagation coming from the entropy coding can be essentially estimated, which is disregarded in the most conventional joint source channel coding (JSCC) systems. The precision of the model in terms of average peak-signal-to-noise has been improved about 0.5 dB compared to classical works. An efficient unequal error protection system based on the model is developed, and can be used in the wireless communication systems.

【基金】 The National Natural Science Foundation of China (No. 60202006)
  • 【文献出处】 Journal of Shanghai Jiaotong University ,上海交通大学学报(英文版) , 编辑部邮箱 ,2008年01期
  • 【分类号】TN919.81
  • 【下载频次】42
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