Coded Noncoherent Communications

W. Lindsey
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引用次数: 17

Abstract

This paper presents detailed results on the relative merits of encoding blocks of binary digits into a set of equiprobable, equal energy, orthogonal signals each containing n bits of information. During a time interval of T seconds, one signal from this set is selected and transmitted over the ``Rician'' channel, further perturbed by additive white Gaussian noise and noncoherently detected at the receiver by matched filters and follow-up envelope detectors. Word and bit error probabilities (and bounds on these) are graphically illustrated for various degrees of coding and for various forms of the channel model. Particular emphasis is placed on the Gaussian channel. Special cases of Viterbi's results for coded phase-coherent communications are compared with those obtained in this paper. Bandwidth considerations are also discussed. The results are useful to the engineer who is faced with the problem of designing coded communication systems where power is limited to the point that phase coherence cannot be established at the receiver. Typical examples are space communications where it is desired to telemeter scientific data from small scientific satellites or space probes or for scatter-channel links which are to be used for relaying data between two widely separated points on the earth.
编码非相干通信
本文给出了将二进制数字块编码成一组等概率的、能量相等的、正交的、每个包含n位信息的信号的相对优点的详细结果。在T秒的时间间隔内,从这组信号中选择一个信号,并通过“医生”信道传输,进一步受到加性高斯白噪声的干扰,并在接收机上由匹配的滤波器和后续包络检测器进行非相干检测。对于不同程度的编码和各种形式的信道模型,用图形说明了字和比特错误概率(以及它们的界限)。特别强调的是高斯通道。文中比较了编码相参通信的特殊情况下的Viterbi结果。还讨论了带宽方面的考虑。这些结果对于工程师在设计编码通信系统时遇到的问题是有用的,这些系统的功率被限制到不能在接收器上建立相位相干。典型的例子是空间通信,其中需要从小型科学卫星或空间探测器遥测科学数据,或用于在地球上两个相距很远的点之间中继数据的散射信道链路。
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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