Uplink non-orthogonal access with MMSE-SIC in the presence of inter-cell interference

Yuki Endo, Y. Kishiyama, K. Higuchi
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引用次数: 92

Abstract

This paper investigates the system-level throughput performance of non-orthogonal access with minimum mean squared error-based linear filtering followed by a successive interference canceller (MMSE-SIC) in the cellular uplink. Although non-orthogonal access employing the MMSE-SIC achieves the entire region of the multiuser capacity in a multiple access channel (MAC), which should be beneficial in enhancing the total user throughput and cell-edge user throughput simultaneously compared to orthogonal access, the multiplexing of multiple users within the same frequency block increases the inter-cell interference in the context of the cellular uplink. The aim of the transmission power control method investigated in this paper is to mitigate the inter-cell interference increase due to non-orthogonal user multiplexing. We employ a weighted proportional fair (PF)-based multiuser scheduling scheme to achieve a good tradeoff between the total user throughput and cell-edge user throughput. Simulation results show that non-orthogonal access employing the MMSE-SIC using the proposed transmission power control significantly enhances the system-level throughput performance compared to orthogonal access, which is widely used in 3.9 and 4G mobile communication systems.
存在小区间干扰的MMSE-SIC上行非正交接入
本文研究了在蜂窝上行链路中采用基于最小均方误差的线性滤波和连续干扰消除(MMSE-SIC)的非正交接入系统级吞吐量性能。虽然采用MMSE-SIC的非正交接入在多址信道(MAC)中实现了整个区域的多用户容量,与正交接入相比,这应该有利于同时提高总用户吞吐量和蜂窝边缘用户吞吐量,但在同一频率块内的多个用户的多路复用增加了蜂窝上行链路背景下的小区间干扰。本文研究的发射功率控制方法的目的是为了减轻由于非正交用户复用而增加的小区间干扰。我们采用一种基于加权比例公平(PF)的多用户调度方案来实现总用户吞吐量和蜂窝边缘用户吞吐量之间的良好权衡。仿真结果表明,采用上述传输功率控制的MMSE-SIC非正交接入比正交接入显著提高了系统级吞吐量性能,在3.9和4G移动通信系统中得到了广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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