分组编码通信系统的设计

W. Lindsey
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引用次数: 10

摘要

介绍了频率复用、相位调制通信系统的设计和性能。特别地,假定发射机是一个理想的相位调制器,它用相位调制的正弦数据子载波和一般的二值复合信号调制射频载波。接收机是一个超外差锁相环(PLL),其输出应用于其中一个n副载波提取器。每个子载波提取器由子载波跟踪回路、定时回路和作为交叉相关器工作的数据检测器组成。本文给出的结果使设计工程师能够在调制数据子载波、二进制值信号和载波信号之间分配总功率。计算了畸变分量的总功率。最后,给出了一种方法,使通信工程师能够选择每个数据子载波的数据速率和调制因子,从而使数据检测器在决策过程中出错的概率最小。所得结果具有足够的通用性,可用于设计块编码系统。这种系统在航空航天通信工程的各个分支中都有应用,例如,信道化通信卫星和深空探测器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Block-Coded Communication Systems
The design and performance of frequency multiplexed, phase-modulated communication systems is presented. In particular, the transmitter is assumed to be an ideal phase modulator which modulates a RF carrier withNphase-modulated, sinusoidal data subcarriers, and in general,Mbinary-valued composite signals. The receiver is a superheterodyne phase-locked loop (PLL) whose output is applied to one ofNsubcarrier extractors. Each subcarrier extractor consists of a subcarrier tracking loop, a timing loop, and a data detector which operates as a cross-correlator. The paper presents results which allow the design engineer to allocate the total power betweenNmodulated data subcarriers,Mbinary-valued signals, and the carrier signal. The total power in the distortion component is computed. Finally, a method is given which allows the communications engineer to select the data rate and the modulation factor of each data subcarrier which will minimize the probability that the data detector will err in the decision process. The results are sufficiently general so that they may be used in designing block-coded systems. Such systems have application in various branches of aerospace communication engineering, e.g., channelized communication satellites and deep-space probes.
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