Space-Time Orthogonal M-ary PPM (STOMP) coding for Coverage Extension of MIMO UWB-IR Systems

E. Baccarelli, M. Biagi, C. Pelizzoni, N. Cordeschi, F. Garzia
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引用次数: 3

Abstract

The wide-band nature of ultra-wide band impulse radio (UWB-IR) systems, recently proposed as the winner candidate for IEEE 802.15.3a standard, presents as a drawback the poor coverage, mainly in faded scenario where, according to FCC Part 15 rules for power spectral mask emission, the power is extremely limited. So, in order to achieve a target BER typical of multimedia applications, it is impossible to assure high performance without requiring the user terminals very close to UWB stations. The only way to solve this limitations is a diversity approach, and, since the employment of multiple-antenna systems does not seem to be expensive, in this contribution multiple-antenna UWB-IR systems are taken into account, by proposing coding schemes and corresponding detectors, (in the general case of partial channel knowledge) in order to improve performance in terms of coverage and BER
MIMO UWB-IR系统覆盖扩展的空时正交M-ary PPM (STOMP)编码
超宽带脉冲无线电(UWB-IR)系统的宽带特性,最近被提议为IEEE 802.15.3a标准的获胜者候选人,提出了一个缺点,即覆盖范围不佳,主要是在褪色的情况下,根据FCC第15部分功率谱掩模发射规则,功率非常有限。因此,为了实现多媒体应用的典型目标误码率,如果不要求用户终端离超宽带站非常近,就不可能保证高性能。解决这一限制的唯一方法是分集方法,而且,由于使用多天线系统似乎并不昂贵,在这一贡献中,通过提出编码方案和相应的检测器(在部分信道知识的一般情况下)来考虑多天线UWB-IR系统,以提高覆盖范围和BER方面的性能
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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