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首页> 外文期刊>IEEE Transactions on Signal Processing >Precoder Designs for the Relay-Aided X Channel Without Source CSI
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Precoder Designs for the Relay-Aided X Channel Without Source CSI

机译:不带源CSI的中继辅助X通道的预编码器设计

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In this paper, precoder designs are proposed for the wireless X networks aided by a relay and with no or very limited channel state information at the transmitters (CSIT). First, we derive the general feasibility conditions for interference alignment (IA) for a relay-aided symmetric multi-input-multi-output X channel (also called the X relay channel or XRC) without any CSI at the source transmitters. Next, we propose an IA-based joint beamforming approach with very limited feedback to the transmitters (referred to as “IA-LFB” in this paper), which can attain the maximum degrees of freedom (DoF) of the network under arbitrarily low relay power. Finally, we propose an iterative minimum-sum mean-square-error (MMSE) precoder design for the single-input-single-output XRC for throughput improvement in the finite signal-to-noise ratio (SNR) region. The proposed MMSE precoder also shows better bit error rate results than the IA precoder over a wide SNR range. Since the MMSE precoder can achieve only locally optimal solutions, we propose to initialize the iterative MMSE algorithm with the IA-LFB precoder which, unlike random initializations, not only improves the throughput in the finite SNR regions but also preserves the network DoF even under limited relay power.
机译:在本文中,提出了一种用于无线X网络的预编码器设计,该设计在中继器的帮助下,在发射机(CSIT)上没有或仅有非常有限的信道状态信息。首先,我们推导了中继辅助对称多输入多输出X信道(也称为X中继信道或XRC)的干扰对准(IA)的一般可行性条件,该干扰在源发射机处没有任何CSI。接下来,我们提出一种基于IA的联合波束成形方法,该方法对发射机的反馈非常有限(在本文中称为“ IA-LFB”),该方法可以在任意低中继的情况下实现网络的最大自由度(DoF)。功率。最后,我们为单输入单输出XRC提出了一种迭代最小和均方误差(MMSE)预编码器设计,以提高有限信噪比(SNR)区域的吞吐量。所提出的MMSE预编码器在宽SNR范围内也比IA预编码器显示出更好的误码率结果。由于MMSE预编码器只能实现局部最优解,因此我们建议使用IA-LFB预编码器来初始化MMSE迭代算法,与随机初始化不同,IA-LFB预编码器不仅可以提高有限SNR区域的吞吐量,而且即使在有限的条件下也可以保留网络DoF。继电器电源。

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