Robust Maximum Likelihood Algorithm-based Mitigation technique for impulsive noise in MIMO-OFDM systems

S. Girija, R. Rao
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Abstract

Non-Gaussian impulsive noise impacts the equalizers and signal detectors directly in the wireless system. The major problem in the multiple-input multiple-output (MIMO)-related applications is the blind source equalization and separation, where the users transmit multiple digital signals in a linear channel that is received using the array of antennas. The noise in the received signals is impulsive in nature, which is mitigated in the research by implementing the Robust Maximum Likelihood Algorithm (RMLA) for handling the degradation of the performance in the wireless system. The constant modulus cost function formulated using RMLA is used for modeling the equalizer to adaptively suppress the influence of the impulsive noise. The effectiveness of the proposed RMLA based impulse noise mitigation is evaluated based on the evaluation metrics, such as Bit Error Rate (BER), Mean Square Error (MSE), and Symbol Error Rate (SER) corresponding to the Signal-to-Noise Ratio (SNR) and dissimilar antenna array size. The proposed RMLA based BE method provided minimum BER values of 0.0021, 0.0044, 0.0142, and minimum MSE value of 0.0006, 0.0012, and 0.0037 with the Rayleigh channel, minimum BER values of 0.0006, 0.0012, and 0.0013, and minimum MSE value of 0.0003 with the Rician channel.
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基于鲁棒极大似然算法的MIMO-OFDM系统脉冲噪声抑制技术
在无线系统中,非高斯脉冲噪声直接影响均衡器和信号检测器。多输入多输出(MIMO)相关应用中的主要问题是盲源均衡和分离,其中用户在使用天线阵列接收的线性信道中发送多个数字信号。接收信号中的噪声本质上是脉冲噪声,在研究中采用鲁棒极大似然算法(RMLA)来处理无线系统的性能下降问题。利用RMLA构造的常模代价函数对均衡器进行建模,自适应抑制脉冲噪声的影响。基于信噪比(SNR)和不同天线阵列尺寸对应的误码率(BER)、均方误差(MSE)和符号错误率(SER)等评价指标,对所提出的基于RMLA的脉冲噪声抑制效果进行了评价。Rayleigh信道的最小误码率分别为0.0021、0.0044、0.0142,最小MSE分别为0.0006、0.0012、0.0037,在ricar信道的最小误码率分别为0.0006、0.0012、0.0013,最小MSE分别为0.0003。
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