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首页> 外文期刊>Communications, IET >Performance of multiband orthogonal frequency division multiplexing network in ultra wideband channels incorporating people shadowing and channel fading
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Performance of multiband orthogonal frequency division multiplexing network in ultra wideband channels incorporating people shadowing and channel fading

机译:多频带正交频分复用网络在超宽带信道中融合了人的阴影和信道衰落的性能

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摘要

Ultra wideband (UWB) systems transmit signals across a much wider frequency than conventional systems and are usually very difficult to detect. UWB systems tend to be useful for short-range indoor applications. However, because of the short duration of UWB pulses, it is easier to engineer extremely high data rates. In multi-band orthogonal frequency division multiplexing (MB-OFDM) architecture, designers gain flexibility, reduction in power consumption, high spectrum efficiency and cost. In the earlier study, people shadowing has been considered to model attenuation in a packet-level UWB channel model. However, in dense short-range indoor applications, the effect of scatterers, diffractors and reflectors cannot be ignored. This happens mostly when the transmit antenna is omni-directional. Compared with the earlier work which incorporated only shadowing effects, this study discusses a packet-level UWB channel model subject to both multipath fading and people shadowing, which can arise even in an indoor channel (e.g. inside a hall of dimensions -C; 10 m), and is incorporated in an MB-OFDM system. The performance analysis of the link is made based on link throughput and delay in servicing packets. The numerical results show the relative effects of various fading distributions, viz., Rayleigh, Rician, Weibull and Nakagami, together with people shadowing on the MB-OFDM system.
机译:超宽带(UWB)系统在比传统系统宽得多的频率上传输信号,通常很难检测到。 UWB系统通常可用于短距离室内应用。但是,由于UWB脉冲的持续时间短,因此设计极高的数据速率更加容易。在多频带正交频分复用(MB-OFDM)架构中,设计人员获得了灵活性,降低了功耗,提高了频谱效率和成本。在较早的研究中,人们考虑将人的影子模型化为数据包级UWB信道模型中的衰减。但是,在密集的短距离室内应用中,散射,衍射和反射器的影响不容忽视。这主要发生在发射天线是全向天线时。与仅包含阴影效应的早期工作相比,本研究讨论了同时受到多径衰落和人员阴影影响的分组级UWB信道模型,即使在室内信道中(例如,在-C尺寸的大厅内; 10 m ),并结合到MB-OFDM系统中。链路的性能分析是基于链路吞吐量和服务数据包的延迟进行的。数值结果显示了各种衰落分布的相对影响,即瑞利,里斯安,威布尔和中神,以及人们对MB-OFDM系统的阴影。

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  • 来源
    《Communications, IET》 |2013年第15期|1665-1675|共11页
  • 作者

    Bhaskar V.; Devi P.A.;

  • 作者单位

    Department of Electronics and Communication Engineering, SRM University, Kattankulathur 603203, Chennai, Tamilnadu, India|c|;

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  • 正文语种 eng
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