Downlink joint transmission by a cluster of remote radio heads (RRHs) is an essential technique for enhancing throughput in future cellular networks. This method requires global channel state information (CSI) at the processing unit that designs the joint precoder. To this end, a large amount of CSI must be shared between the RRHs and that unit. This paper proposes two contributions. The first is a new upper bound on the rate loss, which implies a lower bound on the achievable rate, obtained by a cluster of RRHs that employ joint zero-forcing (ZF) with incomplete CSI. The second contribution, which follows insights from the bound, is a new CSI sharing scheme that drastically reduces the large overhead associated with acquiring global CSI for joint transmission. In a nutshell, each RRH applies a local precoding matrix that creates low-dimensional effective channels that can be quantized more accurately with fewer bits, thereby reducing the overhead of sharing CSI. In addition to the CSI sharing-overhead, this scheme reduces the data rate that must be delivered to each RRH in the cluster.
翻译:由一组远程无线电头(RRHs)联合发送下行链路是提高未来蜂窝网络输送量的一项必要技术,这种方法要求设计联合编码预码器的处理单位提供全球频道状态信息。为此,大量CSI必须在RRHs和该单位之间共享。本文建议了两种贡献。第一种是对损失率设定新的上限,这意味着对使用联合零强迫(ZF)和不完全CSI的一组RRF获得的可实现率设定较低的约束。第二种贡献是在约束的洞察之后,新的CSI共享计划大幅降低与获得全球CSI联合传输有关的大型间接成本。在简而言之,每个RRHS都采用本地的预编码矩阵,创建低维能有效渠道,以更少的位数进行更精确的量化,从而减少分享CSI的间接费用。除了CSI共享外,这一计划还降低了必须交付给该组每个RFS的数据率。