Sequential decoding for efficient communication from deep space

I. Jacobs
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引用次数: 44

Abstract

A system based on sequential decoding and utilizing binary phase-shift keying and 8-level quantized decisions is proposed for deep-space communication. Theoretical analyses augmented by a program of computer Simulation promise operation within 3-4 dB of the channel capacity of an infinite bandwidth additive white Gaussian noise channel. A low probability of erasure is achieved by the suggested use of occasional off-line decoding. A negligible probability of error is readily achieved. Channel coherence is examined and quadratic and decision-directed methods of achieving a phase reference are compared. Extensive symbol interleaving is suggested and an analysis included of the required phase reference signal-to-noise ratio.
从深空有效通信的顺序解码
提出了一种基于顺序译码,利用二进制相移键控和8级量化判决的深空通信系统。通过计算机仿真程序的理论分析,可以保证在无限带宽加性高斯白噪声信道容量的3-4 dB范围内运行。通过建议使用偶尔的脱机解码来实现低擦除概率。误差的概率可以忽略不计。研究了信道相干性,比较了实现相位参考的二次方法和决策导向方法。提出了广泛的符号交错,并分析了所需的相位参考信噪比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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