Multiuser MISO Broadcast Channels with Imperfect CSI: Discrete Signaling without SIC

Min Qiu, Yu-Chih Huang, Jinhong Yuan
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引用次数: 2

Abstract

In this paper, we study the communication problem of multiuser multiple-input single-output (MISO) broadcast channels with imperfect channel state information (CSI) at the transmitter. Zero-forcing precoding based on the imperfect CSI is adopted so that the channel can be transformed into a Gaussian interference channel. We consider a practical setting where only discrete input signalings are employed and all the receivers adopt single-user treating-interference-as-noise (TIN) decoding, as opposed to rate-splitting and successive interference cancellation. Under this setting, we first use the deterministic model to approximate the original channel model and develop communication schemes to achieve the entire capacity region. By translating the results of the deterministic model back to the MISO model, we develop a systematic way to design discrete input signalings for the original problem. Our simulation results show that our scheme is capable of approaching the (outer bound of) capacity region of the Gaussian interference channel.
不完全CSI的多用户MISO广播信道:无SIC的离散信令
本文研究了在发射端信道状态信息不完全的情况下,多用户多输入单输出广播信道的通信问题。采用基于不完全CSI的强制零预编码,将信道转换为高斯干涉信道。我们考虑了一个实际的设置,其中只使用离散输入信号,所有接收器采用单用户处理干扰作为噪声(TIN)解码,而不是速率分裂和连续干扰消除。在此设置下,我们首先使用确定性模型来近似原始信道模型,并制定通信方案以实现整个容量区域。通过将确定性模型的结果转换回MISO模型,我们开发了一种系统的方法来设计原始问题的离散输入信号。仿真结果表明,该方案能够逼近高斯干涉信道的容量区(外界)。
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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