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High-efficient Sensing Methods of Primary Wireless Transmission System for Dynamic Spectrum Sharing-based 5G System

机译:基于动态频谱共享5G系统的主要无线传输系统的高效传感方法

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Currently communication traffic is explosively increasing with the full-scale operation of the fifth-generation mobile communication system (5G). While some frequency bands have already been allocated to the 5G, the allocated bandwidth is still insufficient. Thus, it is necessary to secure more frequency resources; however, it is difficult to squeeze out new frequency bands, especially in sub-6 GHz bands. To cope with the frequency resource shortage problem, dynamic spectrum sharing technology has attracted attentions since this technology allows dynamic operation of the 5G in the dedicated bands to other systems without interfering with primary users. In this paper, for spectrum sharing in the 2.3 GHz band of Japan, we propose sensing methods efficiently and reliably detecting the field pickup unit (FPU) signal based on ARIB STD-B57. The proposed methods can detect sufficiently low FPU signals with SNR = -10 dB in a multi-path fading environment.
机译:目前,通过第五代移动通信系统(5G)的全尺度操作,通信流量是爆炸性的。虽然已经将一些频带分配给5G,但分配的带宽仍然不足。因此,有必要确保更多的频率资源;然而,很难挤出新的频段,尤其是在Sub-6 GHz频段中。为了应对频率资源短缺问题,动态频谱共享技术引起了注意事项,因为该技术允许5G在专用带中的动态操作到其他系统而不干扰主要用户。在本文中,对于日本2.3 GHz频段的频谱共享,我们提出了有效可靠地检测基于ARIB STD-B57的现场拾取单元(FPU)信号的方法。所提出的方法可以在多路径衰落环境中使用SNR = -10dB具有足够低的FPU信号。

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