A nonlinear channel estimator using complex Least Square Support Vector Machines (LS-SVM) is proposed for pilot-aided OFDM system and applied to Long Term Evolution (LTE) downlink under high mobility conditions. The estimation algorithm makes use of the reference signals to estimate the total frequency response of the highly selective multipath channel in the presence of non-Gaussian impulse noise interfering with pilot signals. Thus, the algorithm maps trained data into a high dimensional feature space and uses the structural risk minimization (SRM) principle to carry out the regression estimation for the frequency response function of the highly selective channel. The simulations show the effectiveness of the proposed method which has good performance and high precision to track the variations of the fading channels compared to the conventional LS method and it is robust at high speed mobility.
翻译:提议在高流动性条件下将非线性信道测算器(LS-SVM)用于试点辅助的ODM系统,并应用于长期演进下行链路;估计算法利用参考信号估计高度选择性多路信道的总频率反应,因为非加西语的冲动噪音干扰了试验信号;因此,算法将经过培训的数据绘制成一个高维特征空间,并采用结构风险最小化原则,对高度选择性的频道的频率反应功能进行回归估计;模拟显示拟议方法的有效性,该方法的性能良好,而且非常精确,能够跟踪与常规LS方法相比的淡化通道的变化,而且高速移动是稳健的。