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Iterative decoding on soft information for virtual layered space-frequency receivers

机译:虚拟分层空间频率接收机对软信息的迭代解码

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In this paper, we propose an iteration scheme for the virtual layered space frequency communication architecture. The architecture enables the decoding of the transmitted orthogonal frequency division multiplexing (OFDM)-QPSK signals even if the number of spatial multiplexed layers is twice that of receiving antennas over multipath fading channels. In the proposed iteration scheme, the MAP decoder and detector exchange soft information on the virtual channel. Using the soft informations, the architecture achieves much higher performance with lower computational complexity compared to maximum likelihood detection (MLD) even when the punctured code is used. Consequently, a gain of 4.5 dB can be achieved at a BER of 10−3 compared to that achieved with the MLD in the 4 × 2 MIMO-OFDM system when the rate 3/4 punctured code is used. The performance of the proposed architecture is verified by carrying out computer simulations.
机译:在本文中,我们提出了一种用于虚拟分层空间频率通信体系结构的迭代方案。即使空间多路复用层的数量是多径衰落信道上接收天线数量的两倍,该体系结构也可以对传输的正交频分复用(OFDM)-QPSK信号进行解码。在提出的迭代方案中,MAP解码器和检测器在虚拟通道上交换软信息。与最大似然检测(MLD)相比,使用软信息,即使使用打孔码,该体系结构也可以以较低的计算复杂度实现更高的性能。因此,与使用速率3/4穿孔码的4×2 MIMO-OFDM系统中的MLD相比,在10 -3 的BER下可获得4.5 dB的增益。 。通过执行计算机仿真来验证所提出体系结构的性能。

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