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Effect of Carrier Frequency Offset on Single-Carrier CDMA With Frequency-Domain Equalization

机译:载波频偏对具有频域均衡功能的单载波CDMA的影响

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摘要

Single-carrier code-division multiple access (SC-CDMA) with frequency-domain equalization (FDE) has attracted renewed interest in CDMA due to its lower peak-to-average power ratio (PAPR) and higher frequency diversity than orthogonal frequency-division multiple access (OFDMA), increased robustness to asynchronous multipath and multiuser interference than RAKE-based CDMA, and a reduced need for timing and frequency coordination than time-division multiple access, frequency-division multiple access, and OFDMA. However, existing studies on SC-CDMA are mostly conducted based on an optimistic assumption of perfect carrier frequency estimation; hence, the carrier frequency offset (CFO) effect on the performance of SC-CDMA has not adequately been addressed and is not well understood. In this paper, the system performance of SC-CDMA with FDE is evaluated in terms of the average bit error rate (BER) and signal-to-interference-plus-noise ratio (SINR) obtained through an analytical approach for downlink transmission over a frequency-selective fading channel. The results show that CFO gives rise to three effects: 1) a net phase rotation; 2) fading-like signal power reduction; and 3) intercode interferences (ICIs) due to the loss of code orthogonality. How the CFO-induced BER degradation varies with the number of active users, the number of virtual subcarriers, and constellation size is also investigated. We further show that, in practice, to prevent the BER performance from dramatically deteriorating, the residual CFO after synchronization should be kept within 5% of the virtual subcarrier spacing, irrespective of the constellation size.
机译:具有频域均衡(FDE)功能的单载波码分多址(SC-CDMA)引起了人们对CDMA的新兴趣,因为它的峰均功率比(PAPR)和正交分频比都更高与基于RAKE的CDMA相比,OFDMA具有更好的抗异步多径和多用户干扰的鲁棒性,并且与时分多址,频分多址和OFDMA相比,对时序和频率协调的需求降低。但是,有关SC-CDMA的现有研究大多是基于理想载波频率估计的乐观假设进行的。因此,载波频率偏移(CFO)对SC-CDMA性能的影响尚未得到充分解决,也未得到很好的理解。在本文中,通过分析方法对通过FDE的下行链路传输获得的平均误码率(BER)和信干噪比(SINR)评估了带有FDE的SC-CDMA的系统性能。选频衰落信道。结果表明,CFO会产生三个影响:1)净相位旋转; 2)衰落般的信号功率降低; 3)由于代码正交性损失而引起的代码间干扰(ICI)。还研究了CFO引起的BER下降如何随活动用户数量,虚拟子载波数量和星座图大小而变化。我们进一步表明,在实践中,为了防止BER性能急剧下降,同步后的残留CFO应保持在虚拟副载波间隔的5%之内,而与星座图大小无关。

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