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首页> 外文期刊>IEEE Transactions on Communications >Joint Source-Channel Coding for Deep-Space Image Transmission using Rateless Codes
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Joint Source-Channel Coding for Deep-Space Image Transmission using Rateless Codes

机译:使用无速率代码进行深空图像传输的联合源信道编码

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摘要

A new coding scheme for image transmission over noisy channel is proposed. Similar to standard image compression, the scheme includes a linear transform followed by successive refinement scalar quantization. Unlike conventional schemes, though, in the proposed system the quantized transform coefficients are linearly mapped into channel symbols using systematic linear encoders. This fixed-to-fixed length "linear index coding" approach avoids the use of an explicit entropy coding stage (e.g., arithmetic or Huffman coding), which is typically fragile to channel post-decoding residual errors. We use linear codes over GF(4), which are particularly suited for this application, since they are matched to the dead-zone quantizer symbol alphabet and to the QPSK modulation used on the deep-space communication channel. We optimize the proposed system where the linear codes are systematic Raptor codes over GF(4). The rateless property of Raptor encoders allows to implement a "continuum" of coding rates, in order to accurately match the channel coding rate to the transmission channel capacity and to the quantized source entropy rate for each transform subband and refinement level. Comparisons are provided with respect to the concatenation of state-of-the-art image coding and channel coding schemes used by Jet Propulsion Laboratories (JPL) for the Mars Exploration Rover (MER) Mission.
机译:提出了一种在噪声信道上进行图像传输的新编码方案。与标准图像压缩类似,该方案包括线性变换,然后进行连续的精化标量量化。但是,与常规方案不同,在所提出的系统中,使用系统线性编码器将量化的变换系数线性地映射到信道符号中。这种固定到固定长度的“线性索引编码”方法避免使用显式的熵编码级(例如,算术或霍夫曼编码),该显式的熵编码级通常对于信道后解码残余错误是脆弱的。我们在GF(4)上使用了线性代码,该代码特别适合此应用,因为它们与死区量化器符号字母和深空通信信道上使用的QPSK调制相匹配。我们优化了提出的系统,其中线性代码是基于GF(4)的系统Raptor代码。 Raptor编码器的无速率属性允许实现编码速率的“连续”,以便针对每个变换子带和细化级别将信道编码速率与传输信道容量以及量化的源熵速率精确匹配。在喷气推进实验室(JPL)用于火星探测漫游者(MER)任务的最新图像编码和通道编码方案的级联方面进行了比较。

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