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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Detection of OFDM Signals in Fast-Varying Channels With Low-Density Pilot Symbols
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Detection of OFDM Signals in Fast-Varying Channels With Low-Density Pilot Symbols

机译:具有低密度导频符号的快速变化信道中的OFDM信号检测

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In fast-varying channels, an orthogonal frequency-division multiplexing system needs to insert denser pilot symbols among transmitted symbols in tracking the variation of a channel. However, using denser pilot symbols reduces transmission throughput. In this paper, we propose a pseudopilot algorithm for data detection in fast-varying channels without increasing the pilot density. Our algorithm is based on a regressional model-based least-squares-fitting approach. Within a block of received symbols, we select some data symbols and regard them as pseudopilot symbols. The receiver considers all the possible patterns of the pseudopilots and associates each of them with a data sequence and a corresponding metric. The associated data sequence, whose metric is minimum, is selected as the detected data sequence. Our algorithm is not based on a decision-directed or decision-feedback architecture because the pseudopilots do not come from any detected symbols. The proposed algorithm needs to search all the possible patterns of the pseudopilots, and the complexity may increase with the number of pseudopilots and constellation size. To reduce the number of search, we further propose two modified approaches. The simulation results show that the performance of the proposed algorithms could approach a bit-error probability lower bound that is obtained by letting the receiver know the true values of the pseudopilots. Compared with the linear interpolation method, the proposed algorithm shows obvious improvement in fast-varying channels. The proposed modified approaches could also effectively reduce the number of search while maintaining the performance. We also give the complexity analysis of the proposed algorithm and an approach to determine the degree of the regression polynomial.
机译:在快速变化的信道中,正交频分复用系统需要在发射的符号中插入更密集的导频符号以跟踪信道的变化。但是,使用更密集的导频符号会降低传输吞吐量。在本文中,我们提出了在不增加导频密度的情况下在快速变化的信道中进行数据检测的伪导频算法。我们的算法基于基于回归模型的最小二乘拟合方法。在接收到的符号块中,我们选择一些数据符号并将其视为伪先导符号。接收器考虑伪飞行员的所有可能模式,并将每个伪飞行员与数据序列和相应的度量相关联。选择度量最小的关联数据序列作为检测到的数据序列。我们的算法不是基于决策指导或决策反馈架构的,因为伪导频不是来自任何检测到的符号。所提出的算法需要搜索伪飞行员的所有可能模式,并且复杂度可能随着伪飞行员的数量和星座图大小而增加。为了减少搜索数量,我们进一步提出了两种改进的方法。仿真结果表明,所提算法的性能可以接近误比特概率下限,该下限是通过让接收机知道伪飞行员的真实值而获得的。与线性插值方法相比,该算法在快变信道上显示出明显的改进。所提出的改进方法还可以在保持性能的同时有效减少搜索次数。我们还给出了所提出算法的复杂度分析以及确定回归多项式次数的方法。

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