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Scalable subband subsampled radio architecture for millimetre wave communications with performance analysis

机译:具有性能分析的可扩展子带子采样无线电架构,用于毫米波通信

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摘要

Millimetre wave bands are envisaged to be utilised for next generation ultra-high data rate communications due to the availability of large bandwidths. However, high sampling rate requirement at these frequencies leads to significant power consumption in the devices. In this study, a subband-based subsampled radio architecture is proposed for indoor millimetre wave communications with the objective of improving power efficiency along with scalable data rates and multi-user support under varying Quality of Service (QoS) requirements. An optimum bandwidth partitioning scheme is presented to support the proposed architecture. Subbanding in association with orthogonal spreading codes enables the reduction of sampling rate requirement at the receiver, resulting in significant power savings for medium data rate communication systems. Furthermore, the performance evaluation of the scheme is performed by deriving closed-form analytical expressions for probability of bit error under line-of-sight (LOS) and non-LOS conditions considering the effect of antenna half-power beamwidth. The analytical expressions and simulation results for different requirements including maximum data rate, variable number of users, and variable QoS are evaluated and compared.
机译:由于大带宽的可用性,毫米波波段被设想用于下一代超高数据速率通信。然而,在这些频率上的高采样率要求导致设备中的大量功耗。在这项研究中,提出了一种用于室内毫米波通信的基于子带的子采样无线电架构,旨在在变化的服务质量(QoS)要求下提高功率效率以及可扩展的数据速率和多用户支持。提出了一种最佳的带宽划分方案来支持所提出的架构。与正交扩频码相关联的子频带可降低接收机的采样速率要求,从而为中等数据速率通信系统节省大量功率。此外,通过考虑天线半功率波束宽度的影响,通过得出视线(LOS)和非LOS条件下误码概率的闭式分析表达式,可以对方案进行性能评估。评估并比较了针对不同需求(包括最大数据速率,可变用户数量和可变QoS)的解析表达式和仿真结果。

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