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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Differential Coding for Non-Orthogonal Space-Time Block Codes with Non-Unitary Constellations over Arbitrarily Correlated Rayleigh Channels
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Differential Coding for Non-Orthogonal Space-Time Block Codes with Non-Unitary Constellations over Arbitrarily Correlated Rayleigh Channels

机译:任意相关瑞利信道上具有非Unit星座的非正交空时分组码的差分编码

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摘要

In this paper, we propose a maximum likelihood (ML) decoder for differentially encoded full-rank square nonorthogonal space-time block codes (STBCs) using unitary or non-unitary signal constellations, which is also applicable to fullranked orthogonal STBC (OSTBC). As the receiver is jointly optimized with respect to the channel and the unknown data, it does not require any knowledge of channel power, signal power, or noise power to decode the signal, and the decision is purely based on two consecutively received data blocks. We analyze the effect of channel correlation on the performance of the proposed system in Rayleigh fading channels. Assuming a general correlation model, an upper bound of the pair-wise error probability (PEP) of the differential OSTBCs is derived. An approximate bound of the PEP for the differential nonorthogonal STBCs is also derived. We propose a precoder designing criterion for differential STBC over arbitrarily correlated Rayleigh channels. Precoding improves the system performance over the correlated Rayleigh MIMO channels. Our precoded differential codes differ from the previously proposed precoder designs for differential OSTBC in the following ways: 1) We propose a precoder design for arbitrarily correlated Rayleigh channels, whereas the previous work considers only for transmit correlation. 2) The previous work is only applicable to the OSTBCs with PSK constellations, whereas our precoder is applicable to any type of full-rank square STBCs with unitary and non-unitary signal constellations.
机译:在本文中,我们针对使用unit或非-信号星座图的差分编码全秩平方非正交空时分组码(STBC)提出了最大似然(ML)解码器,该解码器也适用于全秩正交STBC(OSTBC)。由于接收器是针对信道和未知数据进行联合优化的,因此不需要任何信道功率,信号功率或噪声功率的知识即可对信号进行解码,并且该决定完全基于两个连续接收的数据块。我们分析了瑞利衰落信道中信道相关性对所提出系统性能的影响。假设一般的相关模型,得出差分OSTBC的成对错误概率(PEP)的上限。还导出了差分非正交STBC的PEP的近似范围。我们提出了在任意相关瑞利信道上用于差分STBC的预编码器设计标准。预编码可在相关的瑞利MIMO信道上提高系统性能。我们的预编码差分码在以下方面与先前针对差分OSTBC提出的预编码器设计不同:1)我们提出了用于任意相关瑞利信道的预编码器设计,而先前的工作仅考虑发射相关性。 2)先前的工作仅适用于具有PSK星座图的OSTBC,而我们的预编码器适用于具有单一和非单一信号星座图的任何类型的全秩方形STBC。

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