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Ergodic Capacity of Multi-User MIMO Systems Using Pilot-Based Channel Estimation, Quantized Feedback and Outdated Feedback as well as User Selection

机译:使用基于导频的信道估计,量化反馈和过时反馈以及用户选择的多用户mImO系统的遍历容量

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摘要

Abstract— We derive the ergodic channel capacity of a closed-loop MIMO broadcast system under both random user selection (RUS) and semi-orthogonal user selection (SUS) principles, when considering the effects of channel estimation errors, channel state information (CSI) quantization errors and CSI feedback-delay. We intend to answer the question of ”How many simultaneous users should be active in a time slot in order to achieve the maximum sum-rate in a MIMO broadcast system?”. It is shown that we should refrain from supporting full-rank transmissionsdue to the excess inter-user interference caused by imperfect CSI at both the receiver and transmitter under RUS. By contrast, full-rank transmissions may be feasible under the SUS principle. An approximate ergodic capacity equation is also derived for RUS, and then an adaptive-rank transmission strategy is derived, which is capable of maximizing the achievable ergodic capacity.
机译:摘要—当考虑信道估计误差,信道状态信息(CSI)的影响时,我们根据随机用户选择(RUS)和半正交用户选择(SUS)原理推导了闭环MIMO广播系统的遍历信道容量。量化误差和CSI反馈延迟。我们打算回答以下问题:“在一个时隙中应有多少同时用户处于活动状态,以便在MIMO广播系统中获得最大的总速率?”。结果表明,由于在RUS下,接收器和发送器上的CSI不完善会导致过多的用户间干扰,因此我们应避免支持全秩传输。相比之下,根据SUS原理,满级变速箱可能是可行的。还为RUS推导了近似的遍历容量方程,然后推导了自适应秩传输策略,该策略能够最大化可达到的遍历容量。

著录项

  • 作者

    Jin Fan; Hanzo Lajos;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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