A phase ambiguity resolution technique for TCM

W. Osborne, J.L. Whittington
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Abstract

The authors present the simulation model, performance evaluation, and hardware implementation of a technique to resolve phase ambiguity in trellis-coded modulation (TCM) where the popular Viterbi algorithm is utilized. While this approach has been used with BPSK (binary phase shift keying) and QPSK (quadrature phase shift keying), its application to multilevel modulation schemes (M>4) is novel and of interest because it provides a viable alternative to rotationally invariant codes. This approach does not require any arithmetic computations and can be accomplished with minimal hardware. The results presented here are being used to implement a 32-sector phase-quantized TCM system utilizing 8 PSK modulation.<>
一种基于TCM的相位模糊消解技术
作者提出了一种解决网格编码调制(TCM)中相位模糊的技术的仿真模型、性能评估和硬件实现,其中使用了流行的Viterbi算法。虽然这种方法已经与BPSK(二进制相移键控)和QPSK(正交相移键控)一起使用,但它在多电平调制方案(M>4)中的应用是新颖和有趣的,因为它提供了旋转不变码的可行替代方案。这种方法不需要任何算术计算,并且可以用最少的硬件完成。本文提出的结果被用于实现利用8 PSK调制的32扇区相位量化TCM系统。
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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