Performance Evaluation of ML-VBLAST MIMO Decoder Using Different Antenna Configuration Using Ricean and Rayleigh Channel

G. Singh, P. Mishra, R. Vij
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引用次数: 2

Abstract

Wireless communication technology employs the application of multiple antennas at both transmitter and receiver sides to improve the data rates through multiplexing or to improve performance through the diversity technique as compared to single antenna systems. In this paper, we studied the BER performance of Maximum Likelihood (ML)-Vertical Bells Lab Layered Space Time Architecture (V-BLAST) Spatial Multiplexing Technique with different modulation techniques such as BPSK and QPSK, in independent identically distributed (i.i.d) flat fading channel like Rayleigh and Ricean Channel. Further, we compared different multiple antenna configuration with BPSK and QPSK modulation techniques in different channel. Finally, we concluded that ML-VBLAST decoding technique using BPSK modulation scheme gives better result than QPSK modulation technique in both the channels. Furthermore, we observed that we obtain optimal result for 1×4 antennas for V-BLAST system in rician fading channel and for Rayleigh channel 4 × 4 antennas for ML-V-BLAST system. Finally, we compared the results of Rayleigh and Ricean Channel for 2 × 2 antenna configurations and we observed that Ricean Channel provide better results as compared to Rayleigh Channel.
基于Ricean和Rayleigh信道的不同天线配置ML-VBLAST MIMO解码器性能评估
与单天线系统相比,无线通信技术在发送端和接收端同时应用多个天线,通过多路复用提高数据速率或通过分集技术提高性能。本文研究了采用不同调制技术(BPSK和QPSK)的最大似然(ML)-垂直钟实验室分层时空结构(V-BLAST)空间复用技术在Rayleigh和Ricean信道等独立同分布(i.i.d)平坦衰落信道中的BER性能。此外,我们比较了不同信道下BPSK和QPSK调制技术的不同多天线配置。最后,我们得出了使用BPSK调制方案的ML-VBLAST解码技术在两个信道上都比QPSK调制技术具有更好的效果。此外,我们还观察到,对于垂直衰落信道中用于V-BLAST系统的1×4天线和用于ML-V-BLAST系统的瑞利信道4 ×4天线,我们获得了最优的结果。最后,我们比较了瑞利信道和瑞利信道在2 × 2天线配置下的结果,我们观察到瑞利信道比瑞利信道提供更好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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