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On the Study of a Novel Decision Feedback Equalizer with Block Delay Detection for Joint Transceiver Optimization

机译:联合收发器优化的带块延迟检测的新型决策反馈均衡器研究

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This paper presents a novel decision feedback equalizer (DFE) with block delay detection for the joint transceiver design that uses channel state information (CSI). The block delay detection in the proposed DFE offers a degree of freedom for optimizing the precoder of the transmitter, provided the transmission power is constrained. In the proposed DFE, the feedforward matrix is devised to enable a block-based equalizer that can be cooperated with an intrablock decision feedback equalizer for suppressing the intersymbol interference (ISI) for the transmitted block with a certain block delay. In this design, the interblock interference (IBI) for the delay block is eliminated in advance by applying the recently developed oblique projection framework to the implementation of the feedforward matrix. With knowledge of full CSI, the block delay and the associated block-based precoder are jointly designed such that the average bit-error-rate (BER) is minimized, subject to the transmission power constraint. Separate algorithms are derived for directly determining the BER-minimized block delays for intrablock minimum mean-squared error (MMSE) and zero-forcing (ZF) equalization criteria. Theoretical derivations indicate that the proposed MMSE design simultaneously maximize the Gaussian mutual information of a transceiver, even under the cases of existing IBI. Simulation results validate the proposed DFE for devising an optimum transceiver with CSI, and show the superior BER performance of the optimized transceiver using proposed DFE. Relying on analytic results and simulation cases also builds a sub-optimum MMSE design of the proposed DFE using the BER-minimized block delay for ZF criterion, which exhibits almost identical BER performance as the proposed MMSE design in most of the signal-to-noise ratio (SNR) range.
机译:本文针对使用信道状态信息(CSI)的联合收发器设计,提出了一种具有块延迟检测功能的新型判决反馈均衡器(DFE)。假设传输功率受到限制,建议的DFE中的块延迟检测将为优化发射机的预编码器提供一定的自由度。在提出的DFE中,设计了前馈矩阵以使基于块的均衡器能够与块内判决反馈均衡器配合使用,从而以一定的块延迟抑制发射块的符号间干扰(ISI)。在这种设计中,通过将最新开发的倾斜投影框架应用于前馈矩阵的实施,可以预先消除延迟块的块间干扰(IBI)。借助完整的CSI知识,可以共同设计块延迟和相关的基于块的预编码器,以使平均误码率(BER)受传输功率约束的影响最小。推导出单独的算法,以直接确定用于块内最小均方误差(MMSE)和迫零(ZF)均衡标准的BER最小块延迟。理论推导表明,即使在现有IBI的情况下,所提出的MMSE设计也同时使收发器的高斯互信息最大化。仿真结果验证了提出的DFE用于设计具有CSI的最佳收发器,并显示了使用提出的DFE的优化收发器的出色BER性能。依靠分析结果和仿真案例,还使用针对ZF准则的BER最小块延迟建立了拟议DFE的次优MMSE设计,在大多数信噪比中,BER性能几乎与拟议MMSE设计相同。比(SNR)范围。

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