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Distributed antenna selection algorithms for improving BER in MIMO interference channels

机译:用于改善MIMO干扰信道中BER的分布式天线选择算法

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In this paper, distributed antenna selection algorithms are proposed to improve uncoded bit-error-rate (BER) in multiple-input multiple-output (MIMO) interference channels. The well known distributed power control algorithm by Yates in 1995 is used in all proposed schemes together with distributed antenna search algorithms, explicitly distributed exhaustive search, relaxed exhaustive search, and cross-entropy optimization techniques. While maximization of minimum signal-to-interference plus noise ratio (SINR) is the antenna selection metric, power minimization subject to SINR constraint is the power control problem used in the proposed schemes. It is shown that the proposed algorithms improve the BER of the system with acceptable sum-rate and fairness achieved in the system. Prioritization of streams can improve the BER of the system such as by assigning higher priorities to more important streams. Although for simplicity, equal stream priority, i.e., fairness among streams, is considered in this work, the proposed schemes can be extended to prioritization scenarios.
机译:本文提出了分布式天线选择算法,以提高多输入多输出(MIMO)干扰信道中的未编码误码率(BER)。所有提议的方案中均使用了Yates于1995年熟知的分布式功率控制算法,以及分布式天线搜索算法,显式分布式穷举搜索,宽松穷举搜索和交叉熵优化技术。虽然最小信号干扰加噪声比(SINR)的最大值是天线选择指标,但受SINR约束的功率最小化是所提出方案中使用的功率控制问题。结果表明,所提出的算法以可接受的总速率和公平性提高了系统的误码率。流的优先级排序可以提高系统的BER,例如,通过为更重要的流分配更高的优先级。尽管为了简单起见,在这项工作中考虑了相等的流优先级,即流之间的公平性,但是可以将所提出的方案扩展到优先场景。

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