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Reduced complexity short-block data detection techniques for fading time-dispersive channels

机译:降低复杂度的短块数据检测技术,用于消散时间分散的信道

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摘要

The objective is reliable digital communications over fading channels with severe time-dispersion. Three short-block data detection techniques based on linear, nonlinear decision-directed, and maximum likelihood estimation principles are investigated. Short alternating blocks of data and training symbols are used. The training blocks are useful for both channel tracking and data block detection. In contrast to the recursive symbol-to-symbol equalization approaches usually employed, each data block is detected as a unit. Previous restrictions imposed on short-block detection schemes have been removed, resulting in reduced complexity algorithms and higher throughput efficiency. Performance is presented for BPSK and QPSK type signaling using a Rayleigh fading channel model with severe time-dispersion.
机译:目的是在具有严重时间分散的衰落信道上进行可靠的数字通信。研究了基于线性,非线性决策和最大似然估计原理的三种短块数据检测技术。使用短的交替数据块和训练符号。训练块对于通道跟踪和数据块检测都非常有用。与通常采用的递归符号到符号均衡方法相反,每个数据块都作为一个单元进行检测。先前对短块检测方案施加的限制已被消除,从而降低了算法的复杂度并提高了吞吐效率。使用具有严重时间分散的瑞利衰落信道模型,针对BPSK和QPSK类型的信令提供了性能。

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