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Performance Evaluation of ML-VBLAST MIMO System using various antenna configurations with Ricean and Rayleigh Channel

机译:使用Ricean和Rayleigh信道的各种天线配置的ML-VBLAST MIMO系统的性能评估

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Wireless communication technology has shown that the application of multiple antennas at both transmitter and receiver sides improve the possibility of high data rates through multiplexing or to improve performance through diversity compared to single antenna systems. In this article, we studied the BER performance of Maximum Likelihood (ML)- Vertical Bells Lab Layered Space Time Architecture (V-BLAST) Spatial Multiplexing Technique with using different modulation techniques such as BPSK and QPSK, in independent, identically distributed (i.i.d) flat fading channel like Rayleigh and Ricean Channel. In this article we will compared a different multiple antenna configuration with BPSK and QPSK modulation techniques in different channel and finally we will concluded that ML-VBLAST decoding technique using BPSK modulation scheme gives better result than QPSK modulation technique in both the channels. In this we got more optimal result for 1× 4 antennas for V-BLAST system in rician fading channel and for Rayleigh channel 4 X 4 antennas for ML-V-BLAST system. Finally we compare the Rayleigh and Ricean Channel for 2 X 2 antenna configurations and in this we found Ricean Channel have better results than Rayleigh Channel in ML-VBLAST MIMO System.
机译:无线通信技术已经表明,与单天线系统相比,在发射器和接收器侧都使用多个天线可通过多路复用提高高数据速率的可能性,或者通过分集来提高性能。在本文中,我们研究了在独立,均匀分布(iid)中使用不同的调制技术(例如BPSK和QPSK)的最大似然(ML)-垂直贝尔实验室分层时空架构(V-BLAST)空间多路复用技术的BER性能。平坦的衰落信道,如瑞利和赖斯海峡。在本文中,我们将比较不同信道上使用BPSK和QPSK调制技术的不同多天线配置,最后得出的结论是,使用BPSK调制方案的ML-VBLAST解码技术在两个信道上均比QPSK调制技术提供更好的结果。在这种情况下,对于米色衰落信道中的V-BLAST系统,使用1×4天线,对于ML-V-BLAST系统的Rayleigh信道,使用4 X 4天线,可以获得更好的结果。最后,我们比较了2 X 2天线配置的瑞利和莱斯信道,并发现在ML-VBLAST MIMO系统中莱斯信道比瑞利信道具有更好的结果。

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