基于mmse频域均衡(FDE)的UWB-IR和DS-UWB性能评价

Y. Ishiyama, T. Ohtsuki
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引用次数: 53

摘要

超宽带(UWB)作为一种室内短距离高速无线通信技术,近年来备受关注。在所有的超宽带系统中,超宽带脉冲无线电(UWB- ir)和直接序列超宽带(DS-UWB)使用极短脉冲,具有极高的路径分辨率。RAKE接收机是一种能够有效组合不同时延的路径,获得路径分集增益,改善传输特性的技术。然而,在几百Mbps的超高速通信中,多径分布在几十个符号上,这就产生了强的选频信道。导致传输性能下降。同时,频域均衡(FDE)的单载波(SC)传输最近也引起了人们的广泛关注(Falconer et al.(2002))。据报道,具有FDE的SC具有较少的峰值平均功率比问题,并且即使在多径分布在数十个符号上的强选频信道中也能获得良好的正交频分复用性能。在本文中,我们提出了最小均方误差(MMSE)-FDE的UWB-IR和DS-UWB。我们用MMSE-FDE评估了UWB-IR和DS-UWB的误码率(BER),并将其与最大比组合(MRC)-RAKE和MMSE-RAKE的UWB-IR和DS-UWB进行了比较。因此,我们证明了使用MMSE-FDE的UWB-IR比使用MRC-RAKE和MMSE-RAKE的UWB-IR可以获得更好的BER。我们还发现,使用MMSE-FDE的DS-UWB比使用MRC-RAKE和MMSE-RAKE的DS-UWB具有更好的BER,特别是当M较大时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of UWB-IR and DS-UWB with MMSE-frequency domain equalization (FDE)
Ultra wideband (UWB) has recently attracted much attention as an indoor short range high-speed wireless communication. Of all UWB systems, ultra wideband-impulse radio (UWB-IR) and direct sequence-ultra wideband (DS-UWB) use extreme short pulses and have the advantage of the extremely high path resolutions. The RAKE receiver is known as a technique that can effectively combine paths with different delays, obtain the path diversity gain, and improve the transmission characteristics. However, multipath is spread over dozens of symbols in the case of ultra high-speed communications of several hundreds Mbps, which causes the strong frequency selective channel. As a result, the transmission performance degrades. Meanwhile, the single-carrier (SC) transmission with frequency domain equalization (FDE) has also recently attracted much attention (Falconer et al. (2002)). It is reported that the SC with FDE has few problems of peak to average power ratio (PAPR) and also obtains an excellent performance as well as orthogonal frequency division multiplexing (OFDM) even in the strong frequency selective channel where multipath is spread over dozens of symbols. In this paper, we propose UWB-IR and DS-UWB with minimum mean square error (MMSE)-FDE. We evaluate the bit error rate (BER) or UWB-IR and DS-UWB with MMSE-FDE and compare it to that of UWB-IR and DS-UWB with maximal ratio combining (MRC)-RAKE and MMSE-RAKE. In consequence, we show that UWB-IR with MMSE-FDE can achieve the better BER than UWB-IR with MRC-RAKE and MMSE-RAKE. We also show that DS-UWB with MMSE-FDE has a better BER than DS-UWB with MRC-RAKE and MMSE-RAKE, particularly when M is large.
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