Exploiting spatial dimension in cognitive radios and networks

H. Sarvanko, M. Höyhtyä, M. Matinmikko, A. Mämmelä
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引用次数: 9

Abstract

This paper studies the maximum number of users that can be allocated in the same frequency band in case of using beamforming in a transmitter and a receiver by simulations. With the use of smart antennas the spectrum can be used efficiently, and at the same time the quality of service (QoS) of secondary users is increased in comparison with omnidirectional antennas. The results indicate that more users can transmit in the same area while fulfilling QoS constraints. The obtained results regarding spectrum sensing state that beamforming gives a great improvement in comparison with detection with omnidirectional antennas. Beamforming leads to power savings because the transmission power is sent to the wanted direction. In addition, directional antennas decrease the time needed for sensing and therefore more time for secondary transmission is left than with omnidirectional antennas.
利用认知无线电和网络的空间维度
本文通过仿真研究了在发射机和接收机中使用波束成形时,在同一频段内可分配的最大用户数。与全向天线相比,智能天线可以有效地利用频谱,同时提高二次用户的服务质量(QoS)。结果表明,在满足QoS约束的情况下,可以在同一区域内实现更多用户的传输。所得结果与全向天线检测相比,波束形成对频谱感知状态有很大改善。波束成形可以节省功率,因为传输功率被发送到所需的方向。此外,定向天线减少了感知所需的时间,因此比全向天线留下了更多的二次传输时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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