Optimum Power Division in Coherent Communication Systems

H. V. Trees
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引用次数: 4

Abstract

This paper considers the optimum way to divide the available energy between the channel measurement and information transfer functions. Specifically considered is a binary, symmetric, phase-modulation system operating over a channel which imparts a random phase modulation to the signal and adds Gaussian noise. We specify an efficient demodulation scheme and optimize it for all possible energy divisions at the transmitter. The energy division is then varied to achieve the minimum probability of error. For the range of signal and channel parameters considered, it is shown that the probability of error is minimized by devoting all available energy to transmitting information and operating on the information sequence to measure the channel. At high E/No ratios there may be cases in which the probability of error is minimized by dividing the energy between pilot tone and modulation. We were unable to find a case that satisfied the restrictions of our model in which this was true. The exact quantitative results depend on the statistics of the channel variations. Given any set of statistics, the approach developed will enable one to find the optimum power division for that particular case. Even more important are the conclusions which one can draw about the general case from our specific results. First, we see that from the theoretical standpoint one should always use the modulation waveform as part of the synchronization system. In many operational systems this is not done.
相干通信系统的最优功率分配
本文考虑了在信道测量函数和信息传递函数之间分配可用能量的最佳方法。具体考虑的是一个二进制,对称,相位调制系统在一个信道上运行,该信道赋予信号随机相位调制并添加高斯噪声。我们指定了一种有效的解调方案,并对发射机的所有可能的能量划分进行了优化。然后改变能量划分以达到最小的误差概率。对于考虑的信号和信道参数范围,通过将所有可用能量用于传输信息和对信息序列进行操作来测量信道,从而使误差概率最小化。在高E/No比率的情况下,可能存在通过在导频音调和调制之间划分能量来最小化误差概率的情况。我们无法找到满足我们模型的限制条件的情况。精确的定量结果取决于信道变化的统计。给定任何一组统计数据,所开发的方法将使人们能够找到特定情况下的最佳权力分配。更重要的是从我们的具体结果中得出的关于一般情况的结论。首先,我们看到,从理论的角度来看,应该始终使用调制波形作为同步系统的一部分。在许多操作系统中没有这样做。
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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