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Trellis-coded continuous-phase frequency-shift keying with ring convolutional codes

机译:带环卷积码的网格编码连续相频移键控

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摘要

Trellis-coding techniques are applied to continuous-phase frequency-shift keying (CPFSK). A new coding scheme based on convolutional codes on the ring of integers modulo-P is shown to be a natural way to apply trellis coding to CPFSK. Previous work has decomposed CPFSK into two parts: a linear encoder, with memory called the continuous phase encoder (CPE), and a memoryless modulator (MM), where the CPE often has a code structure defined over the ring of integers modulo-P. The combination of a modulo-P convolutional channel encoder (CE) and the CPE is a linear modulo-P encoder. Design examples are given for rate-1/2 coded quaternary CPFSK with modulation indexes 1/2 and 1/4, and rate-2/3 coded octal CPFSK with modulation index 1/8. Combinations are optimized in the normalized minimum Euclidean distance sense for a given total number of states in the overall MLSE receiver. Numerical results show that this new coding scheme consistently obtains better performance than previous schemes.
机译:网格编码技术已应用于连续相频移键控(CPFSK)。一种新的基于整数模P环上的卷积码的编码方案被证明是将网格编码应用于CPFSK的自然方法。先前的工作将CPFSK分解为两部分:一个线性编码器(带有称为连续相位编码器(CPE)的存储器)和一个无记忆调制器(MM),其中CPE通常具有在整数模P环上定义的代码结构。模P卷积通道编码器(CE)和CPE的组合是线性模P编码器。设计示例给出了调制指数为1/2和1/4的速率1/2编码四元CPFSK,以及调制指数为1/8的速率2/3编码八进制CPFSK。针对整个MLSE接收器中给定总数的状态,在归一化的最小欧几里德距离意义上优化了组合。数值结果表明,这种新的编码方案始终比以前的方案获得更好的性能。

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