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A Geometric Approach to Improve Interference Mitigation in Multi-User Detection and Equalization

机译:在多用户检测和均衡中改善干扰缓解的几何方法

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We apply maximal asymptotic conditional efficiency joint successive interference cancellation (MACE-JSIC) to frequency-selective channel equalization and propose improvements that extend MACE-JSIC detection to the broader paradigm of time-varying and imprecisely known communication systems. The need for expensive redesign to include any change in the interfering signals is a fundamental limitation of MACE-JSIC detection despite its high performance and low detection complexity. In this work, we derive sufficiency criteria that reduce maximum asymptotic efficiency (MAE) detection to low-complexity decorrelation and exploit this relationship to extend the MACE-JSIC approach to time-varying communication systems. Simulations on several multi-user systems and frequency-selective channels demonstrate that the performance of the proposed detectors is consistent with theoretical expectations.
机译:我们将最大渐近条件效率联合连续干扰消除(MACE-JSIC)应用于频率选择信道均衡,并提出改进措施,将MACE-JSIC检测扩展到时变和不精确已知的通信系统的更广泛范式。尽管需要高性能,低检测复杂度,但仍需要进行昂贵的重新设计以包括干扰信号的任何变化,这是MACE-JSIC检测的基本限制。在这项工作中,我们得出了将最大渐近效率(MAE)检测降低到低复杂度去相关性的充分性标准,并利用这种关系将MACE-JSIC方法扩展到时变通信系统。在多个多用户系统和频率选择通道上的仿真表明,所提出的检测器的性能与理论预期相符。

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