矢量系统的可靠性有序DFE

B. Cardiff, M. Flanagan, A. Fagan
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引用次数: 1

摘要

本文考虑了一类一般向量系统的检测器。提出了一种新的检测器,可靠性有序决策反馈均衡器(RO-DFE),其中决策的排序是根据可靠性指标来完成的,有助于减轻所有dfe固有的错误传播问题。该结构从初始线性MMSE均衡器中导出可靠性指标。这产生了一个主要优势,即来自该均衡器的软决策可以在DFE中重用,从而只导致很小的总体复杂性增加。对于一类重要的信道无关OFDM预编码器,建立了假设检测器与工作在等效AWGN信道上的检测器之间的等价性。然后用它来推导最大似然(ML)检测器在QPSK的误码率方面的性能下界,以及在最大分集瑞利衰落信道上M-ary QAM的符号误码率方面的性能下界。仿真结果表明,所提出的检测系统比传统的检测系统有显著的提高。新导出的QPSK的ML下界也与模拟的ML实现进行了比较,发现在良好的信噪比条件下是准确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability-Ordered DFE for vector systems
In this paper, detectors are considered for a general class of vector systems. A novel detector, the Reliability-Ordered Decision Feedback Equalizer (RO-DFE), is presented in which the ordering of decisions is done in accordance with reliability metrics helping to mitigate the problem of the error propagation inherent to all DFEs. The proposed structure derives the reliability metrics from an initial linear MMSE equalizer. This yields the major advantage that soft decisions from this equalizer can be reused within the DFE resulting in only a minor overall complexity increase. For an important class of channel independent OFDM pre-coders, the equivalence between a hypothetical detector and one operating on an equivalent AWGN channel is established. This is then used to derive a lower bound on the performance of a Maximum Likelihood (ML) detector in terms of Bit Error Rate for QPSK, and in terms of Symbol Error Rate for M-ary QAM over a maximum diversity Rayleigh fading channel. Simulation results are presented showing significant gains of the proposed detection system over conventional ones. The newly derived ML lower bound for QPSK is also compared to a simulated ML implementation and found to be accurate under good SNR conditions.
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