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Optimum Detection with Low Complexity for Collaborative Spatial Multiplexing in Uplink Mobile WiMAX Systems

机译:在上行移动WiMAX系统中具有低复杂性的优化检测

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In mobile WiMAX systems, uplink collaborative MIMO (Multiple Input Multiple Output) performs spatial multiplexing with two MSs (Mobile Stations), each with one antenna. As two MSs transmit collaboratively on the same sub-channel region, the overall uplink capacity will be doubled. To perform this interesting technique with high performance, most system venders demand the optimal MLD (Maximum-Likelihood Detection) in the base station which has at least two antennas. However, the MLD is difficult to implement due to its explosive computational complexity. In this paper, we propose a novel MIMO decoding scheme which achieves optimal performance with low complexity for collaborative spatial multiplexing in uplink mobile WiMAX systems having an iterative channel decoder using bit log-likelihood ratio information. Simulation results show that the proposed scheme has the same block error rate performance of the MLD with only 28% computational complexity in terms of real multiplication, when both MSs transmit with 16QAM.
机译:在移动WiMAX系统中,上行链接协作MIMO(多输入多输出)用两个MSS(移动台)执行空间多路复用,每个MSS(移动台)都有一个天线。作为两个MSS在同一子信道区域上协同发送,整体上行链路容量将增加一倍。为了执行高性能的这种有趣技术,大多数系统供应商都需要具有至少两个天线的基站中的最佳MLD(最大似然检测)。然而,由于其爆炸性计算复杂性,MLD难以实施。在本文中,我们提出了一种新的MIMO解码方案,该方案在具有使用比特日志似然信息的迭代信道解码器中的上行移动WiMAX系统中具有低复杂性的最佳性能。仿真结果表明,当两个MSS通​​过16QAM发送时,所提出的方案具有相同的块误差速率性能,仅在实际乘法方面具有28%的计算复杂性。

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