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Sparse Activity Detection for Massive Connectivity in Cellular Networks: Multi-Cell Cooperation Vs Large-Scale Antenna Arrays

机译:蜂窝网络中大型连接的稀疏活动检测:多电池合作与大型天线阵列

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Sparse device activity detection for machine-type communications has attracted increasing attention in recent studies. However, most of the previous works focus on the single-cell case. This paper studies the impact of the inter-cell interference on the device activity detection problem with non-orthogonal signatures in multi-cell systems by employing the computationally efficient approximate message passing algorithm (AMP). Specifically, this paper studies the impact of the inter-cell interference by either treating it as noise or recovering it, showing that it is always beneficial to recover the interference at each base station (BS). Two network architectures, namely BSs with large antenna arrays and network with multi-cell cooperation, are compared in terms of their effectiveness in overcoming inter-cell interference. This paper provides an analytical characterization of probabilities of false alarm and missed detection. Simulation results show that large-scale antenna array is effective in improving the performance of all users whereas cooperation is effective in improving the performance of cell-edge users. In terms of the detection performance of the 95-percentile users, simulation results under a typical network setting show that having twice as many antennas provides almost the same benefit as multi-cell cooperation.
机译:在最近的研究中,机器型通信的稀疏设备活动检测引起了越来越关注。但是,以前的大多数作品都侧重于单个细胞案例。本文通过采用计算有效的近似消息传递算法(AMP),研究了小区间干扰对多单元系统中的非正交签名的影响。具体地,本文研究了将细胞间干扰的影响将其视为噪声或恢复,表明恢复每个基站(BS)的干扰总是有益的。两种网络架构,即具有大天线阵列的BSS和具有多电池合作的网络,在克服细胞间干扰方面的有效性方面进行了比较。本文提供了假警报和错过检测的概率的分析表征。仿真结果表明,大型天线阵列在提高所有用户的性能方面有效,而合作是有效提高单元边缘用户的性能。就95百分位用户的检测性能而言,在典型的网络设置下的仿真结果显示,具有两倍的天线提供了几乎与多单元合作相同的益处。

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