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Joint channel estimation and equalization for OFDM based broadband communications in rapidly varying mobile channels

机译:快速变化的移动信道中基于OFDM的宽带通信的联合信道估计和均衡

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This paper is concerned with the challenging and timely problem of channel estimation for orthogonal frequency division multiplexing (OFDM) systems in the presence of frequency selective and very rapidly time varying channels. In OFDM systems operating over rapidly time-varying channels, the orthogonality between subcarriers is destroyed leading to inter-carrier interference (ICI) and resulting in an irreducible error floor. The band-limited, discrete cosine serial expansion of low-dimensionality is employed to represent the time-varying channel. In this way, the resulting reduced dimensional channel coefficients are estimated iteratively with tractable complexity and independently of the channel statistics. The algorithm is based on the expectation maximization-maximum a posteriori probability (EM-MAP) technique leading to a receiver structure that also yields the equalized output using the channel estimates. The pilot symbols are employed to estimate the initial coefficients effectively and unknown data symbols are averaged out in the algorithm in a non-data-aided fashion. It is shown that the computational complexity of the proposed algorithm to estimate the channel coefficients and to generate the equalized output as a by-product is ≃ O(N) per detected symbol, N being the number of OFDM subcarriers. Computational complexity as well as computer simulations carried out for the systems described in WiMAX and LTE standards indicate that it has significant performance and complexity advantages over existing suboptimal channel estimation and equalization algorithms proposed earlier in the literature.
机译:本文关注在存在频率选择性和时变非常快的信道的情况下,正交频分多路复用(OFDM)系统的信道估计所面临的挑战性和及时性问题。在快速时变信道上工作的OFDM系统中,子载波之间的正交性被破坏,从而导致载波间干扰(ICI),并导致不可减少的错误基底。低维的有限带宽,离散余弦序列展开被用来表示时变信道。以这种方式,以易于处理的复杂度并且与信道统计无关地迭代地估计所得的减小的维度的信道系数。该算法基于期望最大化-最大后验概率(EM-MAP)技术,该技术导致了一种接收器结构,该结构还使用信道估计来产生均衡的输出。导频符号被用于有效地估计初始系数,并且未知数据符号在算法中以非数据辅助的方式被平均。结果表明,所提出的算法的计算复杂度为估计信道系数并产生作为副产物的均衡输出,每个检测符号为≃O(N),N为OFDM子载波的数量。针对WiMAX和LTE标准中描述的系统进行的计算复杂性以及计算机仿真表明,与文献中较早提出的现有次优信道估计和均衡算法相比,它具有显着的性能和复杂性优势。

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