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Experiments on MIMO-OFDM system combined with adaptive beamforming based on IEEE 802.16e WMAN standard

机译:基于IEEE 802.16e WMAN标准的MIMO-OFDM系统与自适应波束成形相结合的实验

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摘要

This paper presents field experiments on a Multi-Input Multi-Output (MIMO) system that combines Adaptive Beamforming (ABF) and Spatial Multiplexing (SM) procedures. The combination of SM signal processing with ABF is applied to WiBro, the South Korean Orthogonal Frequency Division Multiplexing (OFDM) system that follows the IEEE 802.16e standard. The field experimental results show that ABF-MIMO OFDM system outperforms a simple MIMO OFDM system by 2 dB (1.5 dB) in the signal to noise ratio (SNR) for 16-QAM (64-QAM) under low correlated fading channel and 4 dB (2.5 dB) in the SNR for 16-QAM (64-QAM) under highly correlated fading channel, respectively, at the frame error rate (FER) of 1%. Details on the implementation of ABF-MIMO OFDM system is also presented in this paper. Through the system implementation and its field experimental results, we verify that the combination of MIMO OFDM system with ABF provides improved performance over a simple MIMO OFDM system in real propagation channel environment and, in particular, it is more effective in highly correlated fading channel.
机译:本文介绍了结合了自适应波束形成(ABF)和空间复用(SM)过程的多输入多输出(MIMO)系统的现场实验。 SM信号处理与ABF的组合应用于WiBro,WiBro是遵循IEEE 802.16e标准的韩国正交频分复用(OFDM)系统。现场实验结果表明,在低相关衰落信道和4 dB的条件下,ABF-MIMO OFDM系统在16-QAM(64-QAM)的信噪比(SNR)方面比简单MIMO OFDM系统好2 dB(1.5 dB)在高度相关的衰落信道下,在16%QAM(64-QAM)的SNR中,SNR(2.5 dB)分别为1%的帧错误率(FER)。本文还详细介绍了ABF-MIMO OFDM系统的实现。通过系统实现及其现场实验结果,我们验证了MIMO OFDM系统与ABF的结合在实际传播信道环境中提供了比简单MIMO OFDM系统更高的性能,尤其是在高度相关的衰落信道中更有效。

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