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The design of a rateless channel coding scheme for deep-space communication

机译:一种用于深空通信的无速率信道编码方案的设计

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In this paper, a rateless channel coding scheme is proposed for deep-space communication. Unlike the traditional fixed-rate coding schemes, in our scheme the coding rate is not designed as a fixed value before transmission, but adaptive to the channel variations resulted from the dynamically varied transmission distance and complex atmospheric conditions. Specifically, a Raptor code which is provided by a cascade structure is adopted for the data transmission. The pre-code of Raptor code is encoded with a linear-time progressive edge-growth algorithm which avoids tedious calculations by matrix transformation. Moreover, based on a joint iterative decoding method, the output degree distribution of our Raptor code is optimized so as to obtain good decoding performances. Comparisons are provided with respect to the fixed-rate coding schemes by numerical simulation, which shows that our proposed rateless coding scheme has better performance and is adaptively capacity-approaching for the deep-space data transmission.
机译:本文提出了一种用于深空通信的无速率信道编码方案。与传统的固定速率编码方案不同,在我们的方案中,编码速率不是在传输前设计为固定值,而是适应因动态变化的传输距离和复杂的大气条件而导致的信道变化。具体地,采用级联结构提供的猛禽码进行数据传输。 Raptor码的预码采用线性时间渐进边沿增长算法进行编码,该算法避免了通过矩阵变换进行繁琐的计算。此外,基于联合迭代解码方法,我们的Raptor码的输出度分布得到了优化,从而获得了良好的解码性能。通过数值模拟对固定速率编码方案进行了比较,这表明我们提出的无速率编码方案具有更好的性能,并且适合于深空数据传输的容量逼近。

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