Low complexity MMSE estimator for OFDM systems over slow fading Rayleigh channels

L. U. Khan, M. I. Khattak, Naeem Khan, M. Shafi
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Abstract

Orthogonal Frequency Division Multiplexing (OFDM) is adopted widespread for wireless and wired communication systems because of its inherent feature of the spectral efficiency and robustness to channel impairments. The throughput deterioration of the OFDM system due to pilots can be reduced by minimizing the density of pilots. A novel Low Overhead Pilot Insertion (LPI) scheme is proposed for OFDM system over slow fading channels without compromising on the Bit Error Rate (BER) performance. Modified Minimum Mean Square Error (M-MMSE) estimator with low computational complexity based on LPI scheme is also proposed. The pilot overhead in LPI scheme is reduced to 51.56% as compared to block-type channel estimation for the same BER performance. The simulation time taken for computing the channel frequency response by M-MMSE estimator with the proposed LPI scheme is reduced to approximately 14.28 % as compared to MMSE estimator for block-type pilot arrangement.
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慢衰落瑞利信道OFDM系统的低复杂度MMSE估计
正交频分复用(OFDM)由于其固有的频谱效率和对信道损伤的鲁棒性等特点,在无线和有线通信系统中得到了广泛的应用。通过减小导频密度,可以减小导频对OFDM系统吞吐量的影响。针对慢衰落信道OFDM系统,提出了一种不影响误码率性能的低开销导频插入(LPI)方案。提出了一种基于LPI方案的低计算复杂度修正最小均方误差(M-MMSE)估计器。在相同的误码率下,LPI方案的导频开销比块式信道估计减少了51.56%。与块导频布置的MMSE估计器相比,采用该LPI方案的M-MMSE估计器计算信道频率响应所需的仿真时间减少了约14.28%。
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