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Decode-and-Forward-Based Differential Modulation for Cooperative Communication System With Unitary and Nonunitary Constellations

机译:具有和非Non星座的协作通信系统中基于解码转发的差分调制

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摘要

In this paper, we derive a maximum-likelihood (ML) decoder of the differential data in a decode-and-forward (DF)-based cooperative communication system utilizing uncoded transmissions. This decoder is applicable to complex-valued unitary and nonunitary constellations suitable for differential modulation. The ML decoder helps to improve the diversity of the DF-based differential cooperative system using an erroneous relaying node. We also derive a piecewise linear (PL) decoder of the differential data transmitted in the DF-based cooperative system. The proposed PL decoder significantly reduces the decoding complexity, as compared with the proposed ML decoder, with no significant degradation in the receiver performance. Existing ML and PL decoders of the differentially modulated uncoded data in the DF-based cooperative communication system are only applicable to binary modulated signals like binary phase shift keying and binary frequency shift keying, whereas the proposed decoders are applicable to complex-valued unitary and nonunitary constellations suitable for differential modulation under uncoded transmissions. We derive a closed-form expression of the uncoded average symbol error rate (SER) of the proposed PL decoder with $M$ phase-shift keying constellation in a cooperative communication system with a single relay and one source–destination pair. An approximate average SER by ignoring higher order noise terms is also derived for this setup. It is analytically shown on the basis of the derived approximate SER that the proposed PL decoder provides full diversity of second order. In addition, we also derive the approximate SER of the differential DF system with multiple relays at asymptotically high signal-to-noise ratio (SNR) of the source–relay links. It is shown by simulations that the proposed PL decoder in the differential DF cooperative system with more than one relay also achie-n-nves the maximum possible diversity.
机译:在本文中,我们在使用未编码传输的基于解码转发(DF)的协作通信系统中,推导了差分数据的最大似然(ML)解码器。该解码器适用于适用于差分调制的复值unit星座和非unit星座。 ML解码器使用错误的中继节点有助于改善基于DF的差分协作系统的多样性。我们还导出了基于DF的协作系统中传输的差分数据的分段线性(PL)解码器。与所提出的ML解码器相比,所提出的PL解码器显着降低了解码复杂度,而接收机性能没有明显下降。在基于DF的协作通信系统中,差分调制的未编码数据的现有ML和PL解码器仅适用于二进制调制信号(如二进制相移键控和二进制频移键控),而建议的解码器适用于复数值value和非unit适用于未编码传输下的差分调制的星座。在具有单个中继和一个源-目的对的协作通信系统中,我们导出了具有$ M $相移键控星座的PL解码器的未编码平均符号错误率(SER)的闭式表达式。通过忽略此设置还可以得出忽略平均高阶噪声项的近似平均SER。根据导出的近似SER分析地显示,所提出的PL解码器提供了二阶的完全分集。此外,我们还推导了具有多个继电器的差动DF系统的近似SER,这些继电器在源-中继链路的渐近高信噪比(SNR)下。通过仿真表明,在具有多个中继的差分DF协作系统中,所提出的PL解码器也实现了最大可能的分集。

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