用限时相位整形脉冲连续相位调制的最小欧氏距离

Richard Hsin-Hsyong Yang, Chia-Kun Lee
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引用次数: 1

摘要

近年来,CPM信号采用带限时相位整形脉冲(CPM- tl)的信息序列来实现功率和带宽的高效传输。对于中等和较大信噪比的CPM,可以用最小欧氏距离来估计其误差性能。本文进一步研究了具有更多时间限制的相位整形脉冲(PSP)的CPM- tl的最小欧几里得距离,并与具有时间无限相位整形脉冲(CPM- tu)的传统CPM进行了比较。CPM- tl方案的优点是可以应用任意实数调制指数(h),并且所得到的CPM网格结构保证了MLSD接收机中状态数所允许的最大约束长度。以往的研究表明,当带宽扩展时,h > 1的传统CPM方案无法获得更大的欧氏距离。然而,我们发现CPM-TL方案在h > 1时可以获得更大的欧氏距离。在相同的复杂度和相似的带宽下,良好的CPM-TL方案优于以前的工作,在MSK上具有高达5 dB的编码增益。此外,CPM-TU方案在所有的PSP和调制级别上都具有弱调制指标,而数值结果表明,具有奇数约束长度的CPM-TL方案在许多情况下没有弱调制指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimum Euclidean distance for continuous phase modulation with time-limited phase shaping pulses
Recently, CPM signals employ information sequence with time-limited phase shaping pulse (CPM-TL) have been shown to achieve power and bandwidth efficient transmission. It is well known that minimum Euclidean distance could be used to estimate the error performance of CPM for moderate and large signal to noise ratio. In this paper, we further investigate the minimum Euclidean distance of CPM-TL with more time-limited phase shaping pulses (PSP) and compared with conventional CPM with time-unlimited PSP (CPM-TU). CPM-TL scheme has the advantages that any real number modulation index (h) could be applied and the resultant trellis structure of CPM guarantees the maximum constraint length allowed by the number of states in the MLSD receiver. Previous work showed that conventional CPM schemes with h > 1 could not achieve larger Euclidean distance with bandwidth expansion. However, we found that CPM-TL scheme could obtain significantly larger Euclidean distance for h > 1. Good CPM-TL schemes outperform previous work are given for the same complexity and similar bandwidth with up to 5 dB coding gain over MSK. Also, CPM-TU schemes have weak modulation indexes for all the PSP and modulation levels yet numerical results show that CPM-TL schemes with odd constraint length have no weak modulation index in many cases.
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