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A decision feedback equalizer with time-reversal structure

机译:具有时间反转结构的决策反馈均衡器

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This work describes the use of a receiver with a time-reversal structure for low-complexity decision feedback equalization of slowly fading dispersive indoor radio channels. Time-reversal is done by storing each block of received signal samples in a buffer and reversing the sequential order of the signal samples in time prior to equalization. As a result, the equivalent channel impulse response as seen by the equalizer is a time-reverse of the actual channel impulse response. Selective time-reversal operation, therefore, allows a decision feedback equalizer (DFE) with a small number of forward filter taps to perform equally well for both minimum-phase and maximum-phase channel characteristics. The author evaluates the theoretical performance bounds for such a receiver and quantifies the possible performance improvement for discrete multipath channels with Rayleigh fading statistics. Two extreme cases of DFE examples are considered: an infinite-length DFE; and a DFE with a single forward filter tap. Optimum burst and symbol timing recovery is addressed and several practical schemes are suggested. Simulation results are presented. The combined use of equalization and diversity reception is considered.
机译:这项工作描述了具有时间反转结构的接收机在慢衰落的分散室内无线信道的低复杂度判决反馈均衡中的使用。通过将接收信号样本的每个块存储在缓冲区中并在均衡之前按时间反转信号样本的顺序来完成时间反转。结果,由均衡器看到的等效信道脉冲响应是实际信道脉冲响应的时间倒数。因此,选择性的时间反转操作允许具有少量前向滤波器抽头的判决反馈均衡器(DFE)在最小相位和最大相位信道特性方面均表现出色。作者评估了这种接收机的理论性能界限,并利用瑞利衰落统计量量化了离散多径信道可能的性能改进。考虑了DFE示例的两种极端情况:无限长DFE;以及带有单个前向滤波器抽头的DFE。解决了最佳突发和符号定时恢复问题,并提出了几种实用方案。给出了仿真结果。考虑了均衡和分集接收的组合使用。

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