基于最小误差波束形成概率的连续检测

Majid Bavand, P. Azmi
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引用次数: 2

摘要

本文研究了一种空间多址场景下每个用户使用单天线、基站使用多天线阵列的接收机优化方法。为了实现空分多址,采用了新引入的最小误差概率波束形成方法来代替传统的最小均方误差波束形成方法。为了增加系统接收用户的数量,通过最小化非接收用户对接收用户检测的误差概率条件,得到了一组新的波束成形权向量。此外,提出了一种启发式算法,以连续的方式利用所提出的基于检测的最小误差波束形成概率。数值分析表明,该方法比MPE和MMSE波束形成支持更多的用户,并且在误差概率意义上具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successive detection based minimum probability of error beamforming
A novel receiver optimization for spatial multiple access scenario is studied in this paper where each user uses single antenna and multiple antenna array is used at the base station. To achieve space division multiple access, the newly introduced minimum probability of error (MPE) beamforming method is used instead of the conventional minimum mean square error (MMSE) beamforming. To increase the number of admitted users to the system, a new set of beamforming weight vectors is obtained for non-admitted users by minimizing their error probability conditioning on the detection of the admitted users. Moreover, a heuristic algorithm is presented to utilize the proposed detection-based minimum probability of error beamforming in a successive manner. By numerical analysis it is shown that the proposed method is able to support more users than MPE and MMSE beamforming in addition to providing better performance in the sense of probability of error.
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