Regularized Interference Alignment Transceiver Design for Asymmetric UL-DL Multi-Cell Multi-User MIMO Systems

Xin Su, Lihua Li, Ping Zhang, Xiuyu Du
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Abstract

In a dynamic time division duplex multi-cell system, the uplink (UL) and downlink (DL) transmissions may co-exist. The asymmetric UL-DL modes introduce more complex and diverse interference among the adjacent cells. In this paper, we propose an interference alignment (IA) scheme for asymmetric UL-DL multi-cell multi-user multi-antenna system. This system involves conventional inter-cell and intra-cell interference in symmetric directions and new asymmetric inter-cell interference. We characterize the properties of the new interference and use these properties to implement partial IA and guarantee feasibility of IA. Through minimizing weighted sum minimum mean square error, we design a regularized IA transceiver to compensate the performance degradation in low and moderate signal-noise-ratio region. The numerical simulations demonstrate that the proposed schemes outperform the previous works for the asymmetric UL-DL multi-cell system.
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非对称UL-DL多小区多用户MIMO系统的正则干扰对准收发器设计
在动态时分双工多小区系统中,上行链路(UL)和下行链路(DL)传输可能同时存在。不对称的UL-DL模式在相邻细胞之间引入了更复杂和多样的干扰。本文提出了一种用于非对称UL-DL多小区多用户多天线系统的干扰对准方案。该系统包括传统的对称方向的细胞间干扰和细胞内干扰,以及新的非对称方向的细胞间干扰。我们描述了新干扰的性质,并利用这些性质实现了部分干涉,保证了干涉的可行性。通过最小化加权和最小均方误差,设计了一种正则化IA收发器,以补偿中低信噪比区域的性能下降。数值模拟结果表明,本文提出的方案在非对称UL-DL多小区系统中优于已有的方案。
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