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MIMO downlink spatial multiplexing algorithms applied to channel measurements

机译:MIMO下行空间多路复用算法应用于信道测量

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Several algorithms have recently been proposed for multiplexing multiple users in multiple-input, multiple-output (MIMO) downlinks. The ability of a transmitter to accomplish this using spatial methods is generally dependent on whether the users' channels are linearly independent. Until now, most multiplexing algorithms have been tested on uncorrelated Gaussian channels, a best-case scenario. We examine the performance of multiplexing multiple users using actual channel measurements. We impose the constraint that all inter-user interference must be zero, and optimize the transmit vectors to maximize total throughput under this constraint. The maximum throughput was calculated for different user separation distances, and the results show that for this particular set of measurement data, a separation of five wavelengths is enough to achieve close to the maximum available performance for two users.
机译:最近已经提出了几种算法,用于在多输入多输出(MIMO)下行链路中多路复用用户。发射机使用空间方法完成此操作的能力通常取决于用户的信道是否线性独立。到目前为止,大多数多路复用算法已在不相关的高斯信道上进行了测试,这是最佳情况。我们使用实际的信道测量来检查多用户复用的性能。我们强加了所有用户间干扰必须为零的约束,并优化了传输向量以在此约束下最大化总吞吐量。针对不同的用户分隔距离计算了最大吞吐量,结果表明,对于这组特定的测量数据,五个波长的分隔足以实现接近两个用户的最大可用性能。

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