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Hybrid Lower-Complexity Wiener Filter for Pilot-Based Channel Estimation for C-RS in LTE-A DL System: With Throughput Evaluation Using 3GPP LTE-A Test Cases

机译:混合低复杂度Wiener滤波器,用于LTE-A DL系统中C-RS的基于导频的信道估计:使用3GPP LTE-A测试用例的吞吐量评估

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摘要

This paper presents a pilot-based lower complexity channel estimation for Long Term Evolution Advanced (LTE-A) Cell-specific Reference Signals (C-RS). The proposed system is a hybrid one, based on using 2 x 1-D Wiener filter for noise filtering at pilot locations only with cubic spline interpolation for data symbol locations, with accuracy that almost matches the 2-D Wiener filter and Wiener interpolation under certain channel and noise conditions, and at reduced computational complexity. The performance of the proposed scheme is evaluated in terms of Mean Squared Error (MSE) under various channel conditions. Complexity analysis show that the proposed scheme requires 8.8% of the number of computations needed by 2-D Wiener filtering with Wiener interpolation, while still matching its performance up till specific noise and channel conditions. In addition, 2 x 1-D Wiener filter performance is proven to be sub-optimal when compared with the performance of 2-D Wiener filter. The obtained results show that the best noise filtering method is a combination of both moving average and Wiener filtering, where the lower bound is a function of both Symbol-to-Noise-Ratio (SNR) and the channel statistics. Simulations in real-life LTE-A scenarios confirms the feasibility of the proposed channel estimation scheme. Analytical results wherever possible and, in general, simulation results are presented.
机译:本文提出了针对高级长期演进(LTE-A)特定于小区的参考信号(C-RS)的基于导频的较低复杂度信道估计。所提出的系统是一种混合系统,基于使用2 x 1-D维纳滤波器在导频位置处进行噪声滤波,仅对数据符号位置进行三次样条插值,其精度在一定条件下几乎与二维维纳滤波器和维纳插值匹配信道和噪声条件,并降低了计算复杂度。在各种信道条件下,根据均方误差(MSE)评估了所提出方案的性能。复杂性分析表明,提出的方案需要使用维纳插值进行二维维纳滤波所需的计算量的8.8%,同时仍要在特定噪声和信道条件下才能保持其性能匹配。此外,与2维维纳滤波器的性能相比,2 x 1维维纳滤波器的性能被证明是次优的。获得的结果表明,最佳的噪声滤波方法是移动平均值和维纳滤波的组合,其中下限是信噪比(SNR)和信道统计信息的函数。现实生活中的LTE-A场景中的仿真证实了所提出的信道估计方案的可行性。尽可能给出分析结果,以及一般情况下的仿真结果。

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