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Time domain spreading and frequency domain maximal ratio combining reception for frequency diversity enhancement in single carrier UWB communication systems

机译:时域扩展和频域最大比合并接收,以增强单载波UWB通信系统中的频率分集

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摘要

Ultra-wideband technology is a promising candidate for short-range broadband communication systems. Ultra-wideband channels are characterized by dense multiple paths that provide multipath diversity, also referred to as frequency diversity. Single carrier systems with frequency domain equalization have attracted much interest for high data rate communications. In this paper, frequency diversity in single carrier ultra-wideband systems is enhanced by employing simple frequency domain maximal ratio combining (FDMRC) reception with time domain complex quadratic spreading (CQS) sequences. Since ultra-wideband channels exhibit dense multiple paths and strong frequency selectivity, the proposed system can attain significant performance improvement over traditional single carrier frequency domain equalization (SC-FDE) systems. Through the comparison of the impact of the cyclic prefix length, the proposed system shows stronger robustness to inter-block interference than the conventional SC-FDE system. Compared with multicarrier systems, like orthogonal frequency-division multiplexing and multi-carrier code division multiple access, the proposed receiver complexity is reduced greatly. To accommodate multiuser communication, block spreading is further introduced to combine with the frequency diversity enhancement technique for single carrier block transmission UWB systems, realizing multiuser interference-free reception.
机译:超宽带技术是短距离宽带通信系统的有希望的候选者。超宽带信道的特点是密集的多路径提供了多径分集,也称为频率分集。具有频域均衡的单载波系统已经引起了人们对高数据速率通信的极大兴趣。本文通过采用简单的频域最大比率合并(FDMRC)接收和时域复二次扩频(CQS)序列来增强单载波超宽带系统中的频率分集。由于超宽带信道具有密集的多径路径和强大的频率选择性,因此与传统的单载波频域均衡(SC-FDE)系统相比,所提出的系统可以显着提高性能。通过比较循环前缀长度的影响,与传统的SC-FDE系统相比,该系统对块间干扰具有更强的鲁棒性。与正交频分复用和多载波码分多址等多载波系统相比,所提出的接收机复杂度大大降低。为了适应多用户通信,进一步引入了块扩展,与单载波块传输UWB系统的频率分集增强技术相结合,实现了多用户无干扰的接收。

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