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OFDM channel estimation using novel LMS adaptive algorithm

机译:使用新型LMS自适应算法的OFDM信道估计

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Spectrally efficient orthogonal frequency division multiplexing (OFDM) offers an ideal solution to inter symbol interference (ISI), by maintaining the orthogonality among subcarriers. For a multi carrier (MC) communication system, the wireless channel impulse response (CIR) varies rapidly under severe channel fading conditions. Fixed step size (FSS) adaptive filtering (AF) provides a way out for channel estimation and equalization, in slow varying fading channels. In this work, an adaptive step size (ASS) least mean squares (LMS) AF is utilized for the purpose of OFDM channel equalization. The performance of the proposed ASS-LMS AF is compared with variable step size (VSS) LMS and normalized LMS (NLMS) algorithms. The superiority of the proposed ASS LMS algorithm is evaluated by the bit error rate (BER) and mean square error (MSE) parameters, which shows an improvement.
机译:光谱有效的正交频分复用(OFDM)通过维护子载波之间的正交性来提供对符号干扰(ISI)的理想解决方案。对于多载波(MC)通信系统,无线通道脉冲响应(CIR)在严格的信道衰落条件下快速变化。固定步骤尺寸(FSS)自适应滤波(AF)在慢速变化的衰落通道中提供了用于信道估计和均衡的出路。在这项工作中,自适应步长(ASS)最小值平均正方形(LMS)AF用于OFDM信道均衡的目的。所提出的ASS-LMS AF的性能与可变步长(VSS)LMS和归一化LMS(NLMS)算法进行比较。所提出的ASS LMS算法的优越性由误码率(BER)和均方误差(MSE)参数评估,其显示出改进。

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