This work addresses the issue of interference generated by co-channel users in downlink multi-antenna multicarrier systems with frequency-packed faster-than-Nyquist (FTN) signaling. The resulting interference stems from an aggressive strategy for enhancing the throughput via frequency reuse across different users and the squeezing of signals in the time-frequency plane beyond the Nyquist limit. The error-free spectral efficiency is proved to be increasing with the frequency packing and FTN acceleration factors. The lower bound for the FTN sampling period that guarantees information losslesness is derived as a function of the transmitting-filter roll-off factor, the frequency-packing factor, and the number of subcarriers. Space-time-frequency symbol-level precoders (SLPs) that trade off constructive and destructive interblock interference (IBI) at the single-antenna user terminals are proposed. Redundant elements are added as guard interval to cope with vestigial destructive IBI effects. The proposals can handle channels with delay spread longer than the multicarrier-symbol duration. The receiver architecture is simple, for it does not require digital multicarrier demodulation. Simulations indicate that the proposed SLP outperforms zero-forcing precoding and achieves a target balance between spectral and energy efficiencies by controlling the amount of added redundancy from zero (full IBI) to half (destructive IBI-free) the group delay of the equivalent channel.
翻译:这项工作解决了共同通道用户在以比Nyquist(FTN)更快的频率包装的滚动因子、频率包装因子和亚载体数目的功能下链多网多闭锁多闭锁系统中产生的干扰问题,由此产生的干扰来自在不同用户之间通过频率再利用和在Nyquist限制之外的时间频调平平面上挤压信号而提高输送量的侵略性战略。无误光谱效率被证明随着频率包装和FTN加速因素的增加而不断提高。FTN抽样取样期中保证信息丢失程度的较低范围是传送-过滤器滚动因子、频率包装因子和亚载器数目的函数。空间时频频率符号级预译器(SLPs)提出了在单安纳用户终端进行建设性和破坏性的隔断层干扰交易的建议。随着防护时间间隔的增加而增加了冗余要素,以应对IFIBI的破坏性效应。提案可以处理延迟传播的渠道,而超出多闭锁的长度,而衍生出信息丢失系数系数因素和次包装分解的分解器数量。对于Simrial-BL的平面平面平面平面结构来说,它所需要的结构要求不要求实现一个数字平衡。