在受限回程下采用QAM量化的下行多单元处理

P. Baracca, S. Tomasin, N. Benvenuto
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引用次数: 4

摘要

多小区处理已被认为是未来无线网络中提高频谱效率的一种解决方案。然而,在基站(BSs)之间共享信道信息和数据需要更高的回程吞吐量,这是当前蜂窝系统所不能提供的。在本文中,我们考虑了一种具有回程吞吐量约束的下行链路多蜂窝场景,并采用波束形成和QAM星座的BSs。针对每个移动终端辅助基站只知道部分数据的情况,我们提出了一种传输方案,即网络中所有基站协同传输量化的QAM符号,而服务基站则发送额外的信号,以便在接收端检测到完整的QAM符号。我们将网络频谱效率优化最大化的问题表述为每个MT a) QAM星座大小和b)量化率。典型蜂窝场景的数值结果表明,该方法在单蜂窝传输和由于回程约束的全网协调情况下,在网络频谱效率方面都优于实际方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Downlink multicell processing employing QAM quantization under a constrained backhaul
Multicell processing has been recognized as a solution to improve spectral efficiency in future wireless networks. However, the sharing of channel information and data among base stations (BSs) requires an higher backhaul throughput, which is not provided by current cellular systems. In this paper we consider a downlink multicell scenario with constraints on the backhaul throughput and BSs employing beamforming and QAM constellations. As for each mobile terminal (MT) the auxiliary BSs know only a partial version of data, we propose a transmission scheme where a quantized QAM symbol is transmitted cooperatively by all the BSs in the network, while the serving BS transmits an additional signal in order to allow the detection of the full QAM symbol at the receiver. We formulate the problem of maximizing the network spectral efficiency optimizing for each MT a) the QAM constellation size and b) the quantization rate. Numerical results provided for typical cellular scenarios show that the proposed practical approach outperforms in terms of network spectral efficiency both the case of single cell transmission and the case of full network coordination due to the backhaul constraints.
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