空白空间认知无线电的灵活多载波PHY设计

Rohit Datta, M. Gautier, V. Berg, Yasunori Futatsugi, M. Ariyoshi, Mario Schühler, Z. Kollár, P. Horváth, D. Noguet, G. Fettweis
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引用次数: 15

摘要

利用空白空间为认知无线电(CR)的研究开辟了一个全新的范式。QoSMOS项目解决的问题之一是为CR系统设计灵活高效的物理层(PHY)。为此,本文对不同的调制技术进行了研究和介绍。它们满足了在碎片化WS中运行的CR的低带外泄漏和频谱效率要求。本文还介绍了可重构和柔性射频前端的设计,因为其性能与这些参数以及实现的可行性和约束条件密切相关。重点是将所提出方案的性能与经典方法进行基准测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible multicarrier PHY design for cognitive radio in White Space
Opportunistic use of White Spaces (WS) has opened up a whole new paradigm in research on cognitive radio (CR). One of the issues addressed by the QoSMOS project is the design of a flexible and efficient physical layer (PHY) for CR systems. To this aim, different modulation techniques are being investigated and are presented in this paper. They fulfill the low out of band leakage and spectral efficiency requirements of a CR operating in fragmented WS. The design of reconfigurable and flexible radio-frequency (RF) front-end is also introduced, since its performance is tightly linked to these parameters and to the implementation feasibility and constraints. Emphasis is put on benchmarking the performance of the proposed schemes over classical approaches.
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