Frequency-domain iterative inter-code interference combined with parallel interference cancellation for cooperative-MIMO multi-code DS-CDMA

Bo Liu, W. Meng, Qiyue Yu, X. Chen
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Abstract

In future wireless communications, it is severe frequency-selective fading channel to support high data rate; meanwhile the available bandwidth becomes limited. To improve the spectrum-efficiency, one of the promising techniques is multiple input multiple output (MIMO) multiplexing technique. However, the space of one user terminal is limited, and it is difficult to accommodate more antennas in one terminal. Thus, cooperative communication is proposed, to achieve diversity and multiplexing gain via different user terminals. In this paper, a cooperative-MIMO based on multi-code direct sequence code-division multiple access (DS-CDMA) system is presented, which improves the spectrum efficiency a lot. However, the severely fading channel degrades the bit error rate (BER) performance of the proposed system significantly. The paper provided a frequency-domain iterative inter-code interference (ICI) combined with parallel interference cancellation (PIC) technology (ICP), which makes it possible to eliminate the interference between antennas and the residual inter-code interference between codes. From the simulation results, it is derived that the proposed method improves BER performance and the throughput of the system significantly.
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协同mimo多码DS-CDMA的频域迭代码间干扰与并行干扰消除
在未来的无线通信中,为支持高数据速率,必须采用严格的频率选择性衰落信道;同时,可用带宽变得有限。为了提高频谱效率,多输入多输出(MIMO)复用技术是一种很有前途的技术。但是,单个用户终端的空间有限,难以在一个终端内容纳更多的天线。因此,提出了协作通信,通过不同的用户终端实现分集和复用增益。提出了一种基于多码直接序列码分多址(DS-CDMA)的协同mimo系统,大大提高了系统的频谱效率。然而,严重衰落信道严重降低了系统的误码率(BER)性能。本文提出了一种结合并行干扰消除技术(ICP)的频域迭代码间干扰技术(ICI),使消除天线间干扰和码间残余码间干扰成为可能。仿真结果表明,该方法显著提高了系统的误码率和吞吐量。
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