首页> 外文会议>IEEE International Symposium on Information Theory;ISIT 2012 >Reverse compute and forward: A low-complexity architecture for downlink distributed antenna systems
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Reverse compute and forward: A low-complexity architecture for downlink distributed antenna systems

机译:反向计算和转发:用于下行链路分布式天线系统的低复杂性体系结构

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We consider a distributed antenna system where L antenna terminals (ATs) are connected to a Central Processor (CP) via digital error-free links of finite capacity R0, and serve K user terminals (UTs). This system model has been widely investigated both for the uplink and the downlink, which are instances of the general multiple-access relay and broadcast relay networks. In this work we focus on the downlink, and propose a novel downlink precoding scheme nicknamed “Reverse Quantized Compute and Forward”(RQCoF). For this scheme we obtain achievable rates and compare with the state-of-the-art available in the literature. We also provide simulation results for a realistic network with fading with K > L UTs, and show that channel-based user selection produces large benefits and essentially removes the problem of rank deficiency in the system matrix.
机译:我们考虑一种分布式天线系统,其中L个天线端子(AT)通过有限容量R0的数字无差错链路连接到中央处理器(CP),并为K个用户终端(UT)服务。该系统模型已经针对上行链路和下行链路进行了广泛的研究,这是通用多址中继和广播中继网络的实例。在这项工作中,我们着重于下行链路,并提出了一种新的下行链路预编码方案,昵称“反向量化计算和转发”(RQCoF)。对于该方案,我们获得了可达到的速率,并与文献中提供的最新技术进行了比较。我们还提供了一个具有K> L UT衰落的现实网络的仿真结果,并表明基于信道的用户选择产生了很大的好处,并且基本上消除了系统矩阵中秩不足的问题。

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