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Block and Fast Block Sparse Adaptive Filtering for Outdoor Wireless Channel Estimation and Equalization

机译:块和快速块稀疏自适应滤波,用于室外无线信道估计和均衡

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摘要

Rayleigh's distribution is mainly used when fading wireless medium does not have proper line of sight (LOS) path and is dominated by a large number of non-line of sight (NLOS) paths due to reflections of the received signal. Also because of relative motion of the base station and mobile station, a random frequency shift is generally introduced in the carrier, which can be realized in terms of Doppler spread. In case of Rayleigh's fading channels, there are two critical problems for receiver design that is accurate estimation of channel coefficients followed by mitigation of channel impairments like inter symbol interference and fading in presence of user mobility. The accuracy of estimated channel state information is really crucial to design robust equalizer for reconstruction of bit sequence and the equalizer performance is affected by the fading rate and Doppler spread. The main research contributions of the paper is based on the exploitation of underlying sparseness of block adaptive filters through -norm penalty for accurate estimation with stable convergence which helps to design computationally efficient adaptive models for estimation. The accuracy of the proposed sparse block and fast block models is tested using 16 QAM modulation format with Rayleigh's fading wireless channel for outdoor environments. With the help of MATLAB simulations, the performance of the proposed sparse BLMS and FBLMS adaptive filtering are verified and the detail comparison results are presented.
机译:瑞利的分布主要用于当衰落无线介质没有适当的视线(LOS)路径时,并且由于接收信号的反射,由大量非线视线(NLOS)路径为主。同样由于基站和移动台的相对运动,通常在载体中引入随机频移,这可以在多普勒扩散方面实现。在Rayleigh的衰落频道的情况下,接收器设计有两个关键问题,即准确估计信道系数,然后减轻频道损伤,如符号间干扰和在存在用户移动性的情况下衰落。估计的信道状态信息的准确性对于设计用于重建位序列的鲁棒均衡器来说至关重要,并且均衡器性能受到衰落率和多普勒的影响。本文的主要研究贡献基于块自适应滤波器的潜在稀疏性,通过稳定收敛准确估计,有助于设计计算有效的估计的自适应模型。使用16 QAM调制格式测试所提出的稀疏块和快速块模型的准确性,具有瑞利衰落的无线通道进行户外环境。借助Matlab模拟,验证了所提出的稀疏BLM和FBLMS自适应滤波的性能,并提出了细节比较结果。

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