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Reduced-complexity detection and phase synchronization of CPM signals

机译:降低复杂度检测和CPM信号的相位同步

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摘要

Based on an extension of Laurent (1986) decomposition of continuous phase modulation (CPM) signals into a sum of linearly modulated components, we derive a class of reduced-complexity maximum-likelihood (ML) coherent detection and closed-loop phase synchronization schemes. The complexity of the resulting detection schemes, expressed in terms of the number of matched filters and states of a Viterbi algorithm, is significantly reduced with respect to that of optimal coherent receivers with negligible performance loss. This result extends a known one valid for the binary case to multilevel CPM. The proposed synchronization schemes do not require an increased number of matched filters, and are perfectly suitable to be used in conjunction with these receivers. Based on the phase-locked loop (PLL) equivalent linear model, a method for optimizing the parameters of digital second-order PLL's is presented. Numerical examples, based on theoretical analysis and computer simulation, are provided for two specific formats in the CPM class: tamed frequency modulation (TFM) and a quaternary raised-cosine (RC) modulation.
机译:基于Laurent(1986)将连续相位调制(CPM)信号分解成线性调制分量之和的扩展,我们导出了一类降低复杂度的最大似然(ML)相干检测和闭环相位同步方案。相对于具有可忽略的性能损失的最佳相干接收机,以匹配滤波器的数量和维特比算法的状态表示的结果检测方案的复杂性大大降低了。该结果将对二进制情况有效的已知结果扩展到多级CPM。提出的同步方案不需要增加数量的匹配滤波器,并且非常适合与这些接收器结合使用。基于锁相环等效线性模型,提出了一种优化数字二阶PLL参数的方法。基于理论分析和计算机仿真的数值示例提供了CPM类中两种特定格式的数据:驯服的频率调制(TFM)和四元升高的余弦(RC)调制。

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