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LINEAR TRANSCEIVER DESIGN FOR RELAY-ASSISTED BROADCAST SYSTEMS WITH DIAGONAL SCALING

机译:对角缩放的中继辅助广播系统的线性收发器设计

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In this paper, we study the linear transceiver design for the downlink of a cellular network assisted by a multi-antenna relay. A diagonal scaling scheme is proposed in which multiple single-antenna users apply different complex-valued scaling to their signals before decoding, as represented by an equivalent diagonal equalizer matrix. This equalizer is designed together with a linear precoder at the base station (BS) and a linear processing matrix at the relay. The objective is to minimize the weighted minimum mean square error (MMSE) between the precoder input and the equalizer output, subject to power constraints at the BS and the relay. In particular, the optimal relaying matrix is first derived in closed form as a function of the precoder and the equalizer. The latter two can then be jointly designed in an efficient iterative manner. Simulation results demonstrate lower bit-error rates (BERs) than previous design methods.
机译:在本文中,我们研究了多天线继电器辅助蜂窝网络的下行链路的线性收发器设计。提出了一种对角线缩放方案,其中多个单天线用户在解码之前将不同的复值缩放应用于它们的信号,如同等效对角线均衡器矩阵所示。该均衡器与基站(BS)的线性预编码器一起设计,以及继电器处的线性处理矩阵。目的是最小化预编码器输入和均衡器输出之间的加权最小平均方误差(MMSE),其受BS和继电器的功率约束。特别地,最佳中继矩阵首先以封闭形式导出,作为预编码器和均衡器。然后,后两者可以以有效的迭代方式联合设计。仿真结果表明比以前的设计方法更低的比特误差率(BERS)。

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