论文标题

降低的复杂性Ungerboeck接收器,用于量化宽带大规模SC-MIMO

A Reduced Complexity Ungerboeck Receiver for Quantized Wideband Massive SC-MIMO

论文作者

Üçüncü, Ali Bulut, Güvensen, Gökhan Muzaffer, Yılmaz, Ali Özgür

论文摘要

在大量的多输入多输出(MIMO)中使用低分辨率类似于数字的转换器在此类系统的总功耗,成本和可行性方面具有许多优势。但是,由于存在严重的量化噪声,这种优势在通道估计和数据检测中遇到了重大挑战。在这项研究中,我们提出了一种新型的迭代接收器,用于使用有效的消息传递算法的有效消息,以基于Bussgang的分解和Ungerboeck因素化,以避免使用复杂的美白过滤器。与现有的文献中量化SC-MIMO的现有接收器相比,具有双向决策反馈的降低状态序列估计量也可以实现显着的复杂性,而无需对传输通道的稀疏性进行任何要求。此外,还得出了不需要任何循环式前缀开销的频率选择通道下SC-MIMO的最低均方根(LMMSE)通道估计器。我们观察到,在不完美的渠道状态信息下,提议的接收器在文献中的现有接收器方面具有显着的性能提高。

Employing low resolution analog-to-digital converters in massive multiple-input multiple-output (MIMO) has many advantages in terms of total power consumption, cost and feasibility of such systems. However, such advantages come together with significant challenges in channel estimation and data detection due to the severe quantization noise present. In this study, we propose a novel iterative receiver for quantized uplink single carrier MIMO (SC-MIMO) utilizing an efficient message passing algorithm based on the Bussgang decomposition and Ungerboeck factorization, which avoids the use of a complex whitening filter. A reduced state sequence estimator with bidirectional decision feedback is also derived, achieving remarkable complexity reduction compared to the existing receivers for quantized SC-MIMO in the literature, without any requirement on the sparsity of the transmission channel. Moreover, the linear minimum mean-square-error (LMMSE) channel estimator for SC-MIMO under frequency-selective channel, which do not require any cyclic-prefix overhead, is also derived. We observe that the proposed receiver has significant performance gains with respect to the existing receivers in the literature under imperfect channel state information.

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