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High data-rate transmission with eigenbeam-space division multiplexing (E-SDM) in a MIMO channel

机译:MIMO通道中的高数据速率传输与Eigenbeam - 空间分割复用(E-SDM)

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When channel state information is known at a transmitter in multiple-input multiple-output systems, the optimum capacity is given by eigenmode channel division with water-pouring power control. In this eigenbeam-space division multiplexing (ESDM), bit assignments to substreams based on the capacity is not optimum due to the fact that the number of assigned bits is expressed by discrete quantity. In the paper, a method to assign both bit and transmit power to each substream based on the criterion minimizing total bit error rate (BER) is developed, and the BER performance is numerically analyzed in comparison to spatial division multiplexing (SDM). The simulation results assuming 5-transmit and 2-receive antennas show that the E-SDM provides about 10 dB gain compared to the conventional SDM at average BER of 10{sup}(-3).
机译:当信道状态信息在多输入多输出系统中的发射器中已知时,最佳容量由具有浇水功率控制的特征模信道分区给出。在该特征空间多路复用(ESDM)中,由于所分配的比特数由离散量表示的事实,基于容量的基于容量的子流的位分配不是最佳的。在本文中,开发了一种基于最小化总比特错误率(BER)的标准来分配对每个子流的方法和向每个子流分配的方法,并且与空间分割多路复用(SDM)相比,对BER性能进行了数量分析。假设5传输和2接收天线的仿真结果表明,与传统SDM的平均值为10 {sup}( - 3)相比,E-SDM提供了大约10dB的增益。

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