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Frequency-Domain Block Signal Detection with QRM-MLD for Frequency-Domain Filtered Single-Carrier Transmission

机译:QRM-MLD的频域块信号检测,用于频域滤波单载波传输

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The frequency-domain filtered single-carrier (SC) signal transmission can achieve improved bit error rate (BER) per-formance due to additional frequency diversity gain while keep-ing a lower peak-to-average power ratio (PAPR) property than orthogonal frequency division multiplexing (OFDM). In this pa-per, we extend our recently proposed frequency-domain block signal detection (FDBD) with MLD employing QR decomposition and M-algorithm (QRM-MLD) to the frequency-domain filtered SC block transmissions. QR decomposition is applied to a conca-tenation of the transmit filter, propagation channel, and discrete Fourier transform (DFT). We evaluate BER and throughput performances by computer simulation. From performance evalu-ation, we discuss how the filter roll-off factor affects the achieva-ble BER and throughput performances and show that as the filter roll-off factor increases, the required number of surviving symbol-candidates in the M-algorithm can be reduced.
机译:频域滤波后的单载波(SC)信号传输可实现额外的频率分集增益,从而提高比特误码率(BER)性能,同时保持比正交时更低的峰均功率比(PAPR)特性频分复用(OFDM)。在本文中,我们将最近提出的频域块信号检测(FDBD)与采用QR分解和M算法(QRM-MLD)的MLD扩展到频域滤波后的SC块传输。 QR分解适用于发射滤波器,传播信道和离散傅里叶变换(DFT)的隐喻。我们通过计算机仿真评估BER和吞吐量性能。从性能评估中,我们讨论了滤波器滚降因子如何影响可实现的BER和吞吐量性能,并表明随着滤波器滚降因子的增加,M算法中所需的存活符号候选数可以达到减少。

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