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Fractional frequency reuse to enhance down link performance in MU Massive MIMO

机译:小数频率重用以增强MU Massive MIMO中的下行链路性能

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In Multi User (MU) Massive MIMO Base Station is provided with large number of antennas to serve number of single antenna user terminals. It offers several benefits over conventional MIMO and takes the advantage of multipath propagation by sending and receiving multiple data signals in same time-frequency resource which increases the throughput, coverage, and reliability. Massive MIMO, averages out the small scale fading and thermal noise. This averaging is done as the number of BS antennas increases without limit (M ≫ K). One of the limiting factor for the performance of Massive MIMO system is pilot contamination. Reuse of the orthogonal pilot sequences in adjacent cells cause pilot contamination. Pilot contamination causes poor channel estimation at the BS and degrades the performance of the system. The proposed scheme improves the performance of downlink by optimized allocation of pilot sequences and using fractional frequency reuse factor (1/N). All the available pilot signals are equally divided among the cells as per the cluster size (N = 1, 3, 7). In the proposed scheme orthogonal pilot signal is transmitted by each user terminal to get the Channel State Information (CSI) to estimate the channel. SIR and terminal capacity for the downlink are calculated for the given number of user terminals using linear precoding (Matched Filter and Zero Forcing) schemes which are the function of the estimated channel and the pilot transmission power (ρp). It is observed that there is significant improvement in Pilot Signal to Interference Plus Noise (PSINR), SIR and terminal capacity by reducing fractional frequency reuse factor i.e. (N = 1, 3, 7).
机译:在多用户(MU)中,大规模MIMO基站配备有大量天线,以服务多个单天线用户终端。它具有优于传统MIMO的优势,并通过在同一时频资源中发送和接收多个数据信号来利用多径传播的优势,从而提高了吞吐量,覆盖范围和可靠性。大规模MIMO均衡了小规模衰落和热噪声。随BS天线数量的增加而无限制地进行平均(M≫ K)。大规模MIMO系统性能的限制因素之一是导频污染。在相邻小区中重复使用正交导频序列会导致导频污染。导频污染会导致BS的信道估计不佳,并降低系统性能。所提出的方案通过优化导频序列分配并使用分数频率复用因子(1 / N)来提高下行链路的性能。根据群集大小(N = 1、3、7),所有可用的导频信号在小区之间均分。在提出的方案中,每个用户终端发送正交导频信号以获得信道状态信息(CSI)以估计信道。使用线性预编码(匹配滤波器和归零)方案为给定数量的用户终端计算下行链路的SIR和终端容量,这是估计信道和导频传输功率(ρp)的函数。可以看到,通过减小小数频率复用因子即(N = 1、3、7),导频干扰噪声(PSINR),SIR和终端容量有了显着改善。

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