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Cross-Layer Design for Multi-Antenna Ultra-Wideband Systems

机译:多天线超宽带系统的跨层设计

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摘要

Ultra-wideband (UWB) is an emerging technology that offers great promises to satisfy the growing demand for low cost and high-speed digital wireless home networks. The enormous bandwidth available, the potential for high data rates, as well as the potential for small size and low processing power long with low implementation cost, all present a unique opportunity for UWB to become a widely adopted radio solution for future wireless home-networking technology. Nevertheless, in order for UWB devices to coexist with other existing wireless technology, the transmitted power level of UWB is strictly limited by the FCC spectral mask. Such limitation poses significant design challenges to any UWB system.This thesis introduces various means to cope with these design challenges. Advanced technologies including multiple-input multiple-output (MIMO) coding, cooperative communications, andcross-layer design are employed to enhance the performance and coverage range of UWB systems. First a MIMO-coding framework for multi-antenna UWB communication systems is developed. By a technique of band hopping in combination with jointly coding across spatial, temporal, and frequency domains, the proposed scheme is able toexploit all the available spatial and frequency diversity, richly inherent in UWB channels. Then, the UWB performance in realistic UWB channel environments is characterized. The proposed performance analysis successfully captures the unique multipath-rich property and random-clustering phenomenon of UWB channels. Next, across-layer channel allocation scheme for UWB multiband OFDM systems is proposed. The proposed scheme optimally allocates subbands, transmitted power, and data rates among users by taking into consideration the performance requirement, the power limitation, as well as the band hopping for users with different data rates. Also, an employment of cooperative communications in UWB systems is proposed to enhance the UWB performance and coverage by exploiting the broadcasting nature of wireless channels and the cooperation among UWB devices. Furthermore, an OFDM cooperative protocol is developed and then applied to enhance the performance of UWB systems. The proposed cooperative protocol not only achieves full diversity but also efficiently utilizes the available bandwidth.
机译:超宽带(UWB)是一项新兴技术,可以满足人们对低成本和高速数字无线家庭网络不断增长的需求。可用的巨大带宽,高数据速率的潜力以及小尺寸和低处理能力(具有较低的实现成本)的潜力,为UWB成为未来无线家庭网络被广泛采用的无线电解决方案提供了独特的机会技术。然而,为了使UWB设备与其他现有的无线技术共存,UWB的发射功率电平严格受到FCC频谱模板的限制。这种局限性给任何UWB系统带来了重大的设计挑战。本文介绍了各种方法来应对这些设计挑战。采用包括多输入多输出(MIMO)编码,协作通信和跨层设计在内的先进技术来增强UWB系统的性能和覆盖范围。首先,开发了用于多天线UWB通信系统的MIMO编码框架。通过将跳频技术与跨空间,时域和频域的联合编码相结合,所提出的方案能够利用UWB信道中固有的所有可用空间和频率分集。然后,表征了实际UWB信道环境中的UWB性能。所提出的性能分析成功地捕获了UWB信道独特的多径特性和随机集群现象。接下来,提出了用于UWB多频带OFDM系统的跨层信道分配方案。所提出的方案通过考虑性能要求,功率限制以及具有不同数据速率的用户的频带跳变,在用户之间最佳地分配子带,发射功率和数据速率。而且,提出了在UWB系统中使用合作通信以通过利用无线信道的广播性质和UWB设备之间的合作来增强UWB性能和覆盖范围。此外,开发了OFDM协作协议,然后将其应用于增强UWB系统的性能。所提出的合作协议不仅实现了完全的分集,而且有效地利用了可用带宽。

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    Siriwongpairat Wipawee;

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  • 年度 2005
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