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PAM decomposition of M-ary multi-h CPM

机译:多进制CPM的PAM分解

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It is known that any multilevel continuous phase-modulated (CPM) signal with a single modulation index can be exactly represented by a sum of pulse-amplitude modulated (PAM) waveforms. In this paper, we show how multi-h CPM signals can also be represented in this manner. The decomposition is presented in general terms as a function of the alphabet size, modulation indexes, and phase pulse of the CPM scheme. The number of pulses required to exactly construct the signal is shown to increase over that previously given for single-h schemes; this increase is in proportion to the number of modulation indexes. We propose an approximation which significantly reduces the number of signal pulses and which minimizes the mean-squared error for an arbitrary set of modulation indexes. We show that this approximation can have two objectives: 1) to reduce the number of pulses in the same manner as has been proposed for single-h schemes; and/or 2) to reduce the number of multi-h pulses; we also show the conditions where this latter objective is most practical. We compare this minimum mean-squared error approximation with another method which was recently proposed for CPM. We also give numerical results on detection performance which demonstrate the practicality of the proposed approximation.
机译:众所周知,任何具有单个调制指数的多电平连续相位调制(CPM)信号都可以精确地由脉冲幅度调制(PAM)波形的总和表示。在本文中,我们展示了如何以这种方式表示多h CPM信号。分解一般表示为CPM方案的字母大小,调制指数和相位脉冲的函数。结果表明,精确构建信号所需的脉冲数比以前为单h方案给出的脉冲数要多。这种增加与调制指数的数量成比例。我们提出一种近似方法,该方法可显着减少信号脉冲的数量,并使任意一组调制指标的均方误差最小。我们证明了这种近似可以有两个目标:1)以与单h方案相同的方式减少脉冲数;和/或2)减少多h脉冲的数量;我们还显示了后一个目标最可行的条件。我们将此最小均方误差近似值与最近为CPM提出的另一种方法进行了比较。我们还给出了检测性能的数值结果,证明了所提出的近似方法的实用性。

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