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Generalized Least Squares Based Channel Estimation for High Data Rate FBMC-OQAM

机译:基于广义最小二乘法的高数据速率FBMC-OQAM信道估计

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This paper addresses the problem of preamble-based Channel Estimation (CE) in filter bank multi-carrier systems with offset quadrature amplitude modulation (FBMC-OQAM), a task that is problematic due to the presence of intrinsic Inter-Carrier Interference (ICI) and Inter-Symbol Interference (lSI). In this work, we present a theoretical analysis of the Mean Squared Error (MSE) of several CE schemes based on the virtual symbol (VS) approach such as the Interference Cancellation Method (ICM) and the Interference Approximation Method (IAM). We also propose and analyze a generalized least squares (GLS) based CE scheme which is capable of achieving improved performance by taking into account the correlation properties of the noise and interference among sub-carriers. Simulation results are presented which verify the accuracy of the theoretical analysis, and also demonstrate that the proposed GLS-based estimation method yields an improvement of almost 3dB in the CE-MSE with respect to the VS-based approach. Finally it is shown that, for higherorder modulation schemes, this CE-MSE reduction translates into significant improvement in the system's overall bit error rate (BER) performance with only minor additional complexity.
机译:本文解决了具有偏移正交幅度调制(FBMC-OQAM)的滤波器组多载波系统中基于前同步码的信道估计(CE)问题,由于存在固有的载波间干扰(ICI),该任务是有问题的和符号间干扰(lSI)。在这项工作中,我们基于干扰消除方法(ICM)和干扰近似方法(IAM)等虚拟符号(VS)方法,对几种CE方案的均方误差(MSE)进行了理论分析。我们还提出并分析了一种基于广义最小二乘(GLS)的CE方案,该方案能够通过考虑噪声和子载波之间的干扰的相关特性来提高性能。给出的仿真结果验证了理论分析的准确性,并且证明了所提出的基于GLS的估计方法相对于基于VS的方法在CE-MSE中产生了近3dB的改善。最终表明,对于高阶调制方案,这种CE-MSE的降低转化为系统的整体误码率(BER)性能的显着提高,而仅需很小的额外复杂度。

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