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MU-MIMO with Localized Downlink Base Station Cooperation and Downtilted Antennas

机译:MU-MIMO与本地化下行链路基站合作和较下端的天线

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Multi-cellular radio systems are often limited due to the presence of cochannel interference. Proposed physical layer concepts, e.g. coordinated joint transmission and interference rejection combining, try to strengthen the signal while combating the interference. It is well known that base station cooperation yields great capacity improvement for downlink multi-antenna cellular networks. However, the proposed solutions assume a central processing unit, coordinating the information exchange and thus determining the optimal resource allocation of the over-all cellular network. Recently multi-user eigenmode transmission was proposed to relax the constraint of channel state information at the transmitter. It requires the terminals to feed back their dominant eigenmodes only. To reduce the computational costs and the information exchange further, we consider limited localized base station cooperation. We demonstrate potential capacity gains in a cellular orthogonal frequency division multiplexing system using real 3D measured antenna patterns and the scaling with the number of cooperating antenna arrays. Additionally, we use minimum mean square error equalization at the terminal side to combat residual cochannel interference.
机译:由于Cochannel干扰的存在,多蜂窝无线电系统通常受限。提出的物理层概念,例如,协调的关节传输和干扰抑制组合,尽量加强信号的同时进行干扰。众所周知,基站协作对下行链路多天线蜂窝网络产生了很大的能力改进。然而,所提出的解决方案假设一个中央处理单元,协调信息交换,从而确定所有蜂窝网络的最佳资源分配。最近提出了多用户特征模型传输,以便在发射机处放宽信道状态信息的约束。它要求终端仅送回其主导的特征模点。为了进一步降低计算成本和信息交流,我们考虑了有限的本地化基站合作。我们展示了使用真实3D测量的天线图案的蜂窝正交频分复用系统中的潜在容量收益,以及具有协作天线阵列的数量的缩放。此外,我们在终端侧使用最小均方误差均衡来打击残差Cochannel干扰。

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