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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Integer Forcing-and-Forward Transceiver Design for MIMO Multipair Two-Way Relaying
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Integer Forcing-and-Forward Transceiver Design for MIMO Multipair Two-Way Relaying

机译:MIMO多对双向中继的整数强制转发收发器设计

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In this paper, we propose a new transmission scheme, called integer forcing-and-forward (IFF), for communications among multipair multiple-antenna users in which each pair exchanges their messages with the help of a single multiple-antenna relay in the multiple-access and broadcast phases. The proposed scheme utilizes integer forcing linear receiver (IFLR) at the relay, which uses equations, i.e., linear integer combinations of messages, to harness intrapair interference. Accordingly, we propose the design of a mean square error (MSE)-based transceiver, including precoder and projection matrices for the relay and users, assuming that perfect channel state information (CSI) is available. In this regard, in the multiple-access phase, we introduce two new MSE criteria for the related precoding and filter designs, i.e., the sum of the equations MSE (Sum-Equation MSE) and the maximum of the equations MSE (Max-Equation MSE), to exploit the equations in the relay. In addition, the convergence of the proposed criteria is proven as well. Moreover, in the broadcast phase, we use the two traditional MSE criteria, i.e., the sum of the users% mean square errors (Sum MSE) and the maximum of the users% mean square errors (Max MSE), to design the related precoding and filters for recovering the relay%s equations by the users. Then, we consider a more practical scenario with imperfect CSI. For this case, the IFLR receiver is modified, and another transceiver design is proposed, which takes into account the effect of channel estimation error. We evaluate the performance of our proposed strategy and compare the results with the conventional amplify-and-forward (AF) and denoise-and-forward (DF) strategies for the same scenario. The results indicate the substantial superiority of the proposed strategy in terms of outage probability and sum rate.
机译:在本文中,我们提出了一种新的传输方案,称为整数强迫转发(IFF),用于多对多天线用户之间的通信,其中,每对天线在多对多天线中继器的帮助下交换消息-访问和广播阶段。所提出的方案利用中继器处的整数强迫线性接收器(IFLR),其使用等式,即消息的线性整数组合来利用对内干扰。因此,我们提出了一种基于均方误差(MSE)的收发器的设计,其中包括针对中继器和用户的预编码器和投影矩阵,并假设可以使用理想的信道状态信息(CSI)。在这方面,在多址访问阶段,我们为相关的预编码和滤波器设计引入了两个新的MSE标准,即方程MSE(总和-方程MSE)之和和方程MSE(最大-方程)的最大值。 MSE),以利用继电器中的方程式。另外,也证明了所提出标准的收敛性。此外,在广播阶段,我们使用两个传统的MSE标准,即用户百分比均方差之和(MSE的总和)和用户百分比均方差的最大值(Max MSE),来设计相关的预编码以及用于由用户恢复继电器%s方程的滤波器。然后,我们考虑使用不完善的CSI的更实际方案。对于这种情况,对IFLR接收机进行了修改,并提出了另一种收发器设计,其中考虑了信道估计误差的影响。我们评估了我们提出的策略的性能,并将结果与​​针对相同场景的常规放大转发(AF)和降噪转发(DF)策略进行了比较。结果表明,在停机概率和总和率方面,该策略具有明显的优势。

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